7319 lines
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*****************
* O R C A *
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,#####'' ,,,,##########,,,, '''####''' '####
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,#'' '''#######################'''
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,#' '#, ## ## ,#' '#, #''# ,####, ,#,
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#########################################################
# -***- #
# Department of theory and spectroscopy #
# #
# Frank Neese #
# #
# Directorship, Architecture, Infrastructure #
# SHARK, DRIVERS #
# Core code/Algorithms in most modules #
# #
# Max Planck Institute fuer Kohlenforschung #
# Kaiser Wilhelm Platz 1 #
# D-45470 Muelheim/Ruhr #
# Germany #
# #
# All rights reserved #
# -***- #
#########################################################
Program Version 6.1.0 - RELEASE -
(GIT: $679e74b$)
($2025-06-10 18:02:51 +0200$)
With contributions from (in alphabetic order):
[Max-Planck-Institut fuer Kohlenforschung]
Daniel Aravena : Magnetic Suceptibility
Michael Atanasov : Ab Initio Ligand Field Theory (pilot matlab implementation)
Alexander A. Auer : GIAO ZORA, VPT2 properties, NMR spectrum
Ute Becker : All parallelization in ORCA, NUMFREQ, NUMCALC
Giovanni Bistoni : ED, misc. LED, open-shell LED, HFLD
Dmytro Bykov : pre 5.0 version of the SCF Hessian
Marcos Casanova-Páez : Triplet and SCS-CIS(D). UHF-(DLPNO)-IP/EA/STEOM-CCSD. UHF-CVS-IP/STEOM-CCSD
Vijay G. Chilkuri : MRCI spin determinant printing, contributions to CSF-ICE
Pauline Colinet : FMM embedding
Dipayan Datta : RHF DLPNO-CCSD density
Achintya Kumar Dutta : EOM-CC, STEOM-CC
Nicolas Foglia : Exact transition moments, OPA infrastructure, MCD improvements
Dmitry Ganyushin : Spin-Orbit,Spin-Spin,Magnetic field MRCI
Miquel Garcia-Rates : C-PCM and meta-GGA Hessian, CCSD/C-PCM, Gaussian charge scheme
Tiago L. C. Gouveia : GS-ROHF, GS-ROCIS
Yang Guo : DLPNO-NEVPT2, F12-NEVPT2, CIM, IAO-localization
Andreas Hansen : Spin unrestricted coupled pair/coupled cluster methods
Ingolf Harden : AUTO-CI MPn and infrastructure
Benjamin Helmich-Paris : MC-RPA, TRAH-(SCF,CASSCF), AVAS, COSX integrals, SCF dyn. polar., MC-PDFT, srDFT
Lee Huntington : MR-EOM, pCC
Robert Izsak : Overlap fitted RIJCOSX, COSX-SCS-MP3, EOM
Riya Kayal : Wick's Theorem for AUTO-CI, AUTO-CI UHF-CCSDT
Emily Kempfer : AUTO-CI RHF CISDT and CCSDT, approximate NEVPT4
Christian Kollmar : KDIIS, OOCD, Brueckner-CCSD(T), CCSD density, CASPT2, CASPT2-K, improved NEVPT2
Axel Koslowski : Symmetry handling
Simone Kossmann : meta-GGA functionals, TD-DFT gradient, OOMP2, (MP2 Hessian; deprecated post 5.0)
Lucas Lang : DCDCAS, Hyperfine gauge corrections, ICE-SOC+SSC
Marvin Lechner : AUTO-CI (C++ implementation), FIC-MRCC
Spencer Leger : CASSCF response
Dagmar Lenk : GEPOL surface, SMD, ORCA-2-JSON
Dimitrios Liakos : Extrapolation schemes; Compound Job, Property file
Dimitrios Manganas : Further ROCIS development; embedding schemes. LFT, Crystal Embedding
Dimitrios Pantazis : SARC Basis sets
Anastasios Papadopoulos: AUTO-CI, single reference methods and gradients
Taras Petrenko : pre 6.0 DFT Hessian and TD-DFT gradient, ECA, NRVS
Petra Pikulova : Analytic Raman intensities
Peter Pinski : DLPNO-MP2, DLPNO-MP2 Gradient
Shashank Vittal Rao : ES-AILFT, MagRelax
Christoph Reimann : Effective Core Potentials
Marius Retegan : Local ZFS, SOC
Christoph Riplinger : Optimizer, TS searches, QM/MM, DLPNO-CCSD(T), (RO)-DLPNO pert. Triples
Michael Roemelt : Original ROCIS implementation, recursive CI coupling coefficients
Masaaki Saitow : Open-shell DLPNO-CCSD energy and density
Barbara Sandhoefer : DKH picture change effects
Yorick L. A. Schmerwitz: GMF and freeze-and-release deltaSCF, NEB S-IDPP initial path
Kantharuban Sivalingam : CASSCF convergence/infrastructure, NEVPT2, NEVPT3, NEVPT4(SD), FIC-MRCI and CEPA variants
Bernardo de Souza : ESD, SOC TD-DFT
Georgi L. Stoychev : AutoAux, RI-MP2 NMR, DLPNO-MP2 response, X2C
Van Anh Tran : RI-MP2 g-tensors
Willem Van den Heuvel : Paramagnetic NMR
Zikuan Wang : NOTCH, Electric field optimization
Frank Wennmohs : Technical directorship and infrastructure
Hang Xu : AUTO-CI-Response properties
[FACCTs GmbH]
Markus Bursch, Nicolas Foglia, Miquel Garcia-Rates, Ingolf Harden, Hagen Neugebauer, Anastasios Papadopoulos,
Christoph Riplinger, Bernardo de Souza, Georgi L. Stoychev
APM, various basis sets, CI-OPT, improved COSX, DLPNO-Multilevel,
DOCKER, DRACO, updates on ESD, Fragmentator, GOAT, IRC, LR-CPCM, L-BFGS, MBIS, meta-GGA TD-DFT gradient, ML-optimized integration grids,
MM, NACMEs, nearIR, NEB, NEB-TS, NL-DFT gradient (VV10), 2- and 3-layer-ONIOM, interface openCOSMO-RS, QMMM,
Crystal-QMMM, RESP, rigid body optimization, SF, symmetry and pop. for TD-DFT, various functionals, SOLVATOR
[Other institutions]
V. Asgeirsson : NEB
Christoph Bannwarth : sTDA-DFT, sTD-DFT, PBEh-3c, B97-3c, D3
Giovanni Bistoni : ETS/NOCV, ADLD/ADEX, COVALED
Martin Brehm : Molecular dynamics
Ronald Cardenas : ETS/NOCV
Martina Colucci : COVALED
Sebastian Ehlert : rSCAN, r2SCAN, r2SCAN-3c, D4, dhf basis sets
Marvin Friede : D4 for Fr, Ra, Ac-Lr
Lars Goerigk : TD-DFT with DH, B97 family of functionals
Stefan Grimme : VdW corrections, initial TS optimization, DFT functionals, gCP, sTDA/sTD-DF
Waldemar Hujo : DFT-NL
H. Jonsson : NEB
Holger Kruse : gCP
Marcel Mueller : wB97X-3c, vDZP basis set
Hagen Neugebauer : wr2SCAN, Native XTB
Gianluca Regni : ADLD/ADEX
Tobias Risthaus : pre 6.0 range-separated hybrid DFT and stability analysis
Lukas Wittmann : regularized MP2, r2SCAN double-hybrids, wr2SCAN
We gratefully acknowledge several colleagues who have allowed us to
interface, adapt or use parts of their codes:
Ed Valeev, F. Pavosevic, A. Kumar : LibInt (2-el integral package), F12 methods
Garnet Chan, S. Sharma, J. Yang, R. Olivares : DMRG
Ulf Ekstrom : XCFun DFT Library
Mihaly Kallay : mrcc (arbitrary order and MRCC methods)
Frank Weinhold : gennbo (NPA and NBO analysis)
Simon Mueller : openCOSMO-RS
Christopher J. Cramer and Donald G. Truhlar : smd solvation model
S Lehtola, MJT Oliveira, MAL Marques : LibXC Library
Liviu Ungur et al : ANISO software
Your calculation uses the libint2 library for the computation of 2-el integrals
For citations please refer to: http://libint.valeyev.net
Your ORCA version has been built with support for libXC version: 7.0.0
For citations please refer to: https://libxc.gitlab.io
This ORCA versions uses:
CBLAS interface : Fast vector & matrix operations
LAPACKE interface : Fast linear algebra routines
SCALAPACK package : Parallel linear algebra routines
Shared memory : Shared parallel matrices
BLAS/LAPACK : OpenBLAS 0.3.29 USE64BITINT DYNAMIC_ARCH NO_AFFINITY SapphireRapids SINGLE_THREADED
Core in use : SapphireRapids
Copyright (c) 2011-2014, The OpenBLAS Project
***********************************
* Starting time: Thu Jul 16 11:49:10 2026
* Host name: algochem-pc1
* Process ID: 14759
* Working dir.: /home/kilian/NMRProject/Vanilla/4-Hydroxybenzaldehyd
***********************************
***************************************
The coordinates will be read from file: orca.xyz
***************************************
Your calculation utilizes the atom-pairwise dispersion correction
based on EEQ partial charges (D4)
Warning: RI is on but no J-basis has been assigned. Assigning Def2/J (nothing to worry about!)
================================================================================
----- Orbital basis set information -----
Your calculation utilizes the basis: def2-SVP
F. Weigend and R. Ahlrichs, Phys. Chem. Chem. Phys. 7, 3297 (2005).
----- AuxJ basis set information -----
Your calculation utilizes the auxiliary basis: def2/J
H-Rn: F. Weigend, Phys. Chem. Chem. Phys. 8, 1057 (2006).
Fr-Lr: K. Eichkorn, F. Weigend, O. Treutler, R. Ahlrichs; Theor. Chem. Acc. 97, 119 (1997).
================================================================================
WARNINGS
Please study these warnings very carefully!
================================================================================
WARNING: Geometry Optimization
===> : Switching off AutoStart
For restart on a previous wavefunction, please use MOREAD
================================================================================
INPUT FILE
================================================================================
NAME = orca.inp
| 1> !PBE D4 DEF2-SVP OPT
| 2>
| 3> %PAL NPROCS 10 END
| 4>
| 5> * xyzfile 0 1 orca.xyz
| 6>
| 7> ****END OF INPUT****
================================================================================
*****************************
* Geometry Optimization Run *
*****************************
Geometry optimization settings:
Update method Update .... BFGS
Choice of coordinates CoordSys .... (2022) Redundant Internals
Initial Hessian InHess .... Almloef's Model
Max. no of cycles MaxIter .... 50
Convergence Tolerances:
Energy Change TolE .... 5.0000e-06 Eh
Max. Gradient TolMAXG .... 3.0000e-04 Eh/bohr
RMS Gradient TolRMSG .... 1.0000e-04 Eh/bohr
Max. Displacement TolMAXD .... 4.0000e-03 bohr
RMS Displacement TolRMSD .... 2.0000e-03 bohr
Strict Convergence .... False
------------------------------------------------------------------------------
ORCA OPTIMIZATION COORDINATE SETUP
------------------------------------------------------------------------------
The optimization will be done in redundant internal coordinates (2022)
Making redundant internal coordinates ... (2022 redundants) done
Evaluating the initial hessian ... (Almloef) done
Evaluating the coordinates ... done
Calculating the B-matrix .... done
Calculating the G-matrix .... done
The number of degrees of freedom .... 67
-----------------------------------------------------------------
Redundant Internal Coordinates
-----------------------------------------------------------------
Definition Initial Value Approx d2E/dq
-----------------------------------------------------------------
1. B(O 1,C 0) 1.2759 0.850919
2. B(C 2,C 0) 1.4586 0.485548
3. B(C 3,C 2) 1.3793 0.649924
4. B(C 4,C 3) 1.3987 0.605144
5. B(C 5,C 4) 1.3860 0.633974
6. B(O 6,C 5) 1.3913 0.556855
7. B(C 7,C 5) 1.3848 0.636847
8. B(C 8,C 7) 1.3906 0.623424
9. B(C 8,C 2) 1.3702 0.671928
10. B(H 9,C 0) 1.0816 0.371364
11. B(H 10,C 3) 1.0816 0.371362
12. B(H 11,C 4) 1.0683 0.389992
13. B(H 12,O 6) 1.0127 0.428419
14. B(H 13,C 7) 1.0801 0.373490
15. B(H 14,C 8) 1.0737 0.382344
16. A(O 1,C 0,C 2) 116.8373 0.436862
17. A(O 1,C 0,H 9) 119.9219 0.372148
18. A(C 2,C 0,H 9) 123.2408 0.340451
19. A(C 3,C 2,C 8) 119.9973 0.444174
20. A(C 0,C 2,C 8) 122.2455 0.421492
21. A(C 0,C 2,C 3) 117.7572 0.418995
22. A(C 4,C 3,H 10) 116.2557 0.353300
23. A(C 2,C 3,C 4) 120.0769 0.435858
24. A(C 2,C 3,H 10) 123.6674 0.357605
25. A(C 3,C 4,C 5) 118.4305 0.433913
26. A(C 5,C 4,H 11) 121.2294 0.359075
27. A(C 3,C 4,H 11) 120.3401 0.356245
28. A(O 6,C 5,C 7) 121.5101 0.425040
29. A(C 4,C 5,C 7) 122.3302 0.437922
30. A(C 4,C 5,O 6) 116.1597 0.424696
31. A(C 5,O 6,H 12) 119.4667 0.351599
32. A(C 5,C 7,C 8) 117.3372 0.436599
33. A(C 8,C 7,H 13) 122.4253 0.355431
34. A(C 5,C 7,H 13) 120.2376 0.356718
35. A(C 7,C 8,H 14) 117.4056 0.356847
36. A(C 2,C 8,C 7) 121.8279 0.440844
37. A(C 2,C 8,H 14) 120.7665 0.361428
38. D(C 3,C 2,C 0,H 9) -179.9987 0.016052
39. D(C 8,C 2,C 0,O 1) 179.9999 0.016052
40. D(C 3,C 2,C 0,O 1) 0.0007 0.016052
41. D(C 8,C 2,C 0,H 9) 0.0005 0.016052
42. D(C 4,C 3,C 2,C 8) -0.0001 0.029410
43. D(H 10,C 3,C 2,C 0) -0.0000 0.029410
44. D(C 4,C 3,C 2,C 0) 179.9991 0.029410
45. D(H 10,C 3,C 2,C 8) -179.9992 0.029410
46. D(H 11,C 4,C 3,H 10) -0.0003 0.025269
47. D(C 5,C 4,C 3,H 10) 179.9993 0.025269
48. D(H 11,C 4,C 3,C 2) -179.9995 0.025269
49. D(C 5,C 4,C 3,C 2) 0.0001 0.025269
50. D(C 7,C 5,C 4,C 3) -0.0000 0.027890
51. D(O 6,C 5,C 4,C 3) -179.9997 0.027890
52. D(O 6,C 5,C 4,H 11) -0.0001 0.027890
53. D(C 7,C 5,C 4,H 11) 179.9996 0.027890
54. D(H 12,O 6,C 5,C 7) 115.9166 0.022454
55. D(H 12,O 6,C 5,C 4) -64.0837 0.022454
56. D(H 13,C 7,C 5,O 6) -0.0004 0.028160
57. D(H 13,C 7,C 5,C 4) 179.9999 0.028160
58. D(C 8,C 7,C 5,O 6) 179.9996 0.028160
59. D(C 8,C 7,C 5,C 4) -0.0001 0.028160
60. D(H 14,C 8,C 7,H 13) 0.0006 0.026912
61. D(H 14,C 8,C 7,C 5) -179.9994 0.026912
62. D(C 2,C 8,C 7,H 13) -179.9998 0.026912
63. D(C 2,C 8,C 7,C 5) 0.0002 0.026912
64. D(H 14,C 8,C 2,C 3) 179.9995 0.031589
65. D(H 14,C 8,C 2,C 0) 0.0003 0.031589
66. D(C 7,C 8,C 2,C 3) -0.0001 0.031589
67. D(C 7,C 8,C 2,C 0) -179.9992 0.031589
-----------------------------------------------------------------
Number of atoms .... 15
Number of degrees of freedom .... 67
*************************************************************
* GEOMETRY OPTIMIZATION CYCLE 1 *
*************************************************************
---------------------------------
CARTESIAN COORDINATES (ANGSTROEM)
---------------------------------
C -2.596402 0.131230 -0.074418
O -3.185945 -0.999533 -0.032262
C -1.137897 0.114223 -0.064624
C -0.510146 -1.112736 -0.010985
C 0.886606 -1.185594 0.000668
C 1.609414 -0.003754 -0.042727
O 2.994835 -0.131180 -0.028939
C 0.997237 1.237206 -0.096834
C -0.393078 1.263546 -0.106565
H -3.178461 1.041974 -0.114978
H -1.038777 -2.055724 0.023928
H 1.377187 -2.133676 0.042141
H 3.450537 -0.528115 0.783688
H 1.593759 2.136996 -0.129583
H -0.868870 2.225138 -0.148510
----------------------------
CARTESIAN COORDINATES (A.U.)
----------------------------
NO LB ZA FRAG MASS X Y Z
0 C 6.0000 0 12.011 -4.906489 0.247989 -0.140630
1 O 8.0000 0 15.999 -6.020564 -1.888844 -0.060966
2 C 6.0000 0 12.011 -2.150314 0.215850 -0.122122
3 C 6.0000 0 12.011 -0.964036 -2.102766 -0.020759
4 C 6.0000 0 12.011 1.675443 -2.240448 0.001262
5 C 6.0000 0 12.011 3.041352 -0.007094 -0.080742
6 O 8.0000 0 15.999 5.659418 -0.247894 -0.054687
7 C 6.0000 0 12.011 1.884505 2.337981 -0.182990
8 C 6.0000 0 12.011 -0.742810 2.387756 -0.201379
9 H 1.0000 0 1.008 -6.006421 1.969045 -0.217277
10 H 1.0000 0 1.008 -1.963004 -3.884755 0.045217
11 H 1.0000 0 1.008 2.602506 -4.032063 0.079635
12 H 1.0000 0 1.008 6.520570 -0.997993 1.480956
13 H 1.0000 0 1.008 3.011768 4.038337 -0.244876
14 H 1.0000 0 1.008 -1.641926 4.204901 -0.280643
--------------------------------
INTERNAL COORDINATES (ANGSTROEM)
--------------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 1.275916548742 0.00000000 0.00000000
C 1 2 0 1.458637033504 116.83725108 0.00000000
C 3 1 2 1.379266779127 117.75720271 0.00000000
C 4 3 1 1.398699478114 120.07689786 179.99911271
C 5 4 3 1.386030416870 118.43048511 0.00000000
O 6 5 4 1.391337069750 116.15968675 180.00027220
C 6 5 4 1.384799613077 122.33021770 0.00000000
C 3 1 2 1.370203542752 122.24549678 179.99990328
H 1 2 3 1.081615655682 119.92193659 179.99945242
H 4 3 1 1.081617316741 123.66737810 0.00000000
H 5 4 3 1.068292659347 120.34011985 180.00053780
H 7 6 5 1.012711384432 119.46671209 295.91632583
H 8 6 5 1.080061589718 120.23755035 179.99989215
H 9 3 1 1.073683652084 120.76647552 0.00000000
---------------------------
INTERNAL COORDINATES (A.U.)
---------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 2.411132846861 0.00000000 0.00000000
C 1 2 0 2.756424522118 116.83725108 0.00000000
C 3 1 2 2.606436478165 117.75720271 0.00000000
C 4 3 1 2.643158957294 120.07689786 179.99911271
C 5 4 3 2.619217901169 118.43048511 0.00000000
O 6 5 4 2.629246021800 116.15968675 180.00027220
C 6 5 4 2.616892019076 122.33021770 0.00000000
C 3 1 2 2.589309443531 122.24549678 179.99990328
H 1 2 3 2.043957371401 119.92193659 179.99945242
H 4 3 1 2.043960510347 123.66737810 0.00000000
H 5 4 3 2.018780557044 120.34011985 180.00053780
H 7 6 5 1.913747169281 119.46671209 295.91632583
H 8 6 5 2.041020612335 120.23755035 179.99989215
H 9 3 1 2.028968056908 120.76647552 0.00000000
---------------------
BASIS SET INFORMATION
---------------------
There are 3 groups of distinct atoms
Group 1 Type C : 7s4p1d contracted to 3s2p1d pattern {511/31/1}
Group 2 Type O : 7s4p1d contracted to 3s2p1d pattern {511/31/1}
Group 3 Type H : 4s1p contracted to 2s1p pattern {31/1}
Atom 0C basis set group => 1
Atom 1O basis set group => 2
Atom 2C basis set group => 1
Atom 3C basis set group => 1
Atom 4C basis set group => 1
Atom 5C basis set group => 1
Atom 6O basis set group => 2
Atom 7C basis set group => 1
Atom 8C basis set group => 1
Atom 9H basis set group => 3
Atom 10H basis set group => 3
Atom 11H basis set group => 3
Atom 12H basis set group => 3
Atom 13H basis set group => 3
Atom 14H basis set group => 3
---------------------------------
AUXILIARY/J BASIS SET INFORMATION
---------------------------------
There are 3 groups of distinct atoms
Group 1 Type C : 12s5p4d2f1g contracted to 6s4p3d1f1g pattern {711111/2111/211/2/1}
Group 2 Type O : 12s5p4d2f1g contracted to 6s4p3d1f1g pattern {711111/2111/211/2/1}
Group 3 Type H : 5s2p1d contracted to 3s1p1d pattern {311/2/1}
Atom 0C basis set group => 1
Atom 1O basis set group => 2
Atom 2C basis set group => 1
Atom 3C basis set group => 1
Atom 4C basis set group => 1
Atom 5C basis set group => 1
Atom 6O basis set group => 2
Atom 7C basis set group => 1
Atom 8C basis set group => 1
Atom 9H basis set group => 3
Atom 10H basis set group => 3
Atom 11H basis set group => 3
Atom 12H basis set group => 3
Atom 13H basis set group => 3
Atom 14H basis set group => 3
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
ORCA STARTUP CALCULATIONS
-- RI-GTO INTEGRALS CHOSEN --
------------------------------------------------------------------------------
------------------------------------------------------------------------------
___
/ \ - P O W E R E D B Y -
/ \
| | | _ _ __ _____ __ __
| | | | | | | / \ | _ \ | | / |
\ \/ | | | | / \ | | | | | | / /
/ \ \ | |__| | / /\ \ | |_| | | |/ /
| | | | __ | / /__\ \ | / | \
| | | | | | | | __ | | \ | |\ \
\ / | | | | | | | | | |\ \ | | \ \
\___/ |_| |_| |__| |__| |_| \__\ |__| \__/
- O R C A' S B I G F R I E N D -
&
- I N T E G R A L F E E D E R -
v1 FN, 2020, v2 2021, v3 2022-2024
------------------------------------------------------------------------------
----------------------
SHARK INTEGRAL PACKAGE
----------------------
Number of atoms ... 15
Number of basis functions ... 156
Number of shells ... 72
Maximum angular momentum ... 2
Integral batch strategy ... SHARK/LIBINT Hybrid
RI-J (if used) integral strategy ... SPLIT-RIJ (Revised 2003 algorithm where possible)
Printlevel ... 1
Contraction scheme used ... SEGMENTED contraction
Prescreening option ... SCHWARTZ
Thresh ... 2.500e-11
Tcut ... 2.500e-12
Tpresel ... 2.500e-12
Coulomb Range Separation ... NOT USED
Exchange Range Separation ... NOT USED
Multipole approximations ... NOT USED
Finite Nucleus Model ... NOT USED
CABS basis ... NOT available
Auxiliary Coulomb fitting basis ... AVAILABLE
# of basis functions in Aux-J ... 507
# of shells in Aux-J ... 165
Maximum angular momentum in Aux-J ... 4
Auxiliary J/K fitting basis ... NOT available
Auxiliary Correlation fitting basis ... NOT available
Auxiliary 'external' fitting basis ... NOT available
Checking pre-screening integrals ... done ( 0.0 sec) Dimension = 72
=> SHARK Basis and OBASIS are compatible. Storing Pre-screening
Shell pair information
Shell pair cut-off parameter TPreSel ... 2.5e-12
Total number of shell pairs ... 2628
Shell pairs after pre-screening ... 2422
Total number of primitive shell pairs ... 9726
Primitive shell pairs kept ... 6546
la=0 lb=0: 715 shell pairs
la=1 lb=0: 872 shell pairs
la=1 lb=1: 280 shell pairs
la=2 lb=0: 315 shell pairs
la=2 lb=1: 199 shell pairs
la=2 lb=2: 41 shell pairs
Checking whether 4 symmetric matrices of dimension 156 fit in memory
:Max Core in MB = 4096.00
MB in use = 6.48
MB left = 4089.52
MB needed = 0.37
Data fit in memory = YES
Calculating RI/J V-Matrix + Cholesky decomp.... done ( 0.0 sec)
Calculating Nuclear repulsion ... done ( 0.0 sec) ENN= 400.111551830727 Eh
Diagonalization of the overlap matrix:
Smallest eigenvalue ... 2.511e-04
Time for diagonalization ... 0.005 sec
Threshold for overlap eigenvalues ... 1.000e-07
Number of eigenvalues below threshold ... 0
Time for construction of square roots ... 0.001 sec
Total time needed ... 0.009 sec
-------------------
DFT GRID GENERATION
-------------------
General Integration Accuracy IntAcc ... 4.388
Radial Grid Type RadialGrid ... OptM3 with GC (2021)
Angular Grid (max. ang.) AngularGrid ... 4 (Lebedev-302)
Angular grid pruning method GridPruning ... 4 (adaptive)
Weight generation scheme WeightScheme... mBecke (2022)
Basis function cutoff BFCut ... 1.0000e-11
Integration weight cutoff WCut ... 1.0000e-14
Partially contracted basis set ... off
Rotationally invariant grid construction ... off
Angular grids for H and He will be reduced by one unit
Total number of grid points ... 73583
Total number of batches ... 1157
Average number of points per batch ... 63
Average number of grid points per atom ... 4906
Grids setup in 0.6 sec
Initializing property integral containers ... done ( 0.0 sec)
SHARK setup successfully completed in 0.7 seconds
Maximum memory used throughout the entire STARTUP-calculation: 19.7 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
-------------------------------------------------------------------------------
ORCA GUESS
Start orbitals & Density for SCF / CASSCF
-------------------------------------------------------------------------------
------------
SCF SETTINGS
------------
Hamiltonian:
Density Functional Method .... DFT(GTOs)
Exchange Functional Exchange .... PBE
PBE kappa parameter XKappa .... 0.804000
PBE mue parameter XMuePBE .... 0.219520
Correlation Functional Correlation .... PBE
PBE beta parameter CBetaPBE .... 0.066725
LDA part of GGA corr. LDAOpt .... PW91-LDA
Gradients option PostSCFGGA .... off
NL short-range parameter .... 6.400000
RI-approximation to the Coulomb term is turned on
Number of AuxJ basis functions .... 507
General Settings:
Integral files IntName .... orca
Hartree-Fock type HFTyp .... RHF
Total Charge Charge .... 0
Multiplicity Mult .... 1
Number of Electrons NEL .... 64
Basis Dimension Dim .... 156
Nuclear Repulsion ENuc .... 400.1115518307 Eh
Convergence Acceleration:
AO-DIIS CNVDIIS .... on
Start iteration DIISMaxIt .... 12
Startup error DIISStart .... 0.200000
# of expansion vecs DIISMaxEq .... 5
Bias factor DIISBfac .... 1.050
Max. coefficient DIISMaxC .... 10.000
MO-DIIS CNVKDIIS .... off
Trust-Rad. Augm. Hess. CNVTRAH .... auto
Auto Start mean grad. ratio tolernc. .... 1.125000
Auto Start start iteration .... 50
Auto Start num. interpolation iter. .... 10
Max. Number of Micro iterations .... 24
Max. Number of Macro iterations .... Maxiter - #DIIS iter
Number of Davidson start vectors .... 2
Converg. threshold (grad. norm) .... 1.000e-05
Grad. Scal. Fac. for Micro threshold .... 0.100
Minimum threshold for Micro iter. .... 1.000e-02
NR start threshold (gradient norm) .... 1.000e-04
Initial trust radius .... 0.400
Minimum AH scaling param. (alpha) .... 1.000
Maximum AH scaling param. (alpha) .... 1000.000
Quad. conv. algorithm .... NR
White noise on init. David. guess .... on
Maximum white noise .... 0.010
Pseudo random numbers .... off
Inactive MOs .... canonical
Orbital update algorithm .... Taylor
Preconditioner .... Diag
Full preconditioner red. dimension .... 250
SOSCF CNVSOSCF .... on
Start iteration SOSCFMaxIt .... 150
Startup grad/error SOSCFStart .... 0.003300
Hessian update SOSCFHessUp .... L-BFGS
Autom. constraints SOSCFAutoConstrain .... off
Level Shifting CNVShift .... on
Level shift para. LevelShift .... 0.2500
Turn off err/grad. ShiftErr .... 0.0010
Zerner damping CNVZerner .... off
Static damping CNVDamp .... on
Fraction old density DampFac .... 0.7000
Max. Damping (<1) DampMax .... 0.9800
Min. Damping (>=0) DampMin .... 0.0000
Turn off err/grad. DampErr .... 0.1000
SCF Procedure:
Maximum # iterations MaxIter .... 125
SCF integral mode SCFMode .... Direct
Integral package .... SHARK and LIBINT hybrid scheme
Reset frequency DirectResetFreq .... 20
Integral Threshold Thresh .... 2.500e-11 Eh
Primitive CutOff TCut .... 2.500e-12 Eh
Convergence Tolerance:
Convergence Check Mode ConvCheckMode .... Total+1el-Energy
Convergence forced ConvForced .... 0
Energy Change TolE .... 1.000e-08 Eh
1-El. energy change .... 1.000e-05 Eh
Orbital Gradient TolG .... 1.000e-05
Orbital Rotation angle TolX .... 1.000e-05
DIIS Error TolErr .... 5.000e-07
------------------------------
INITIAL GUESS: MODEL POTENTIAL
------------------------------
Loading Hartree-Fock densities ... done
Calculating cut-offs ... done
Initializing the effective Hamiltonian ... done
Setting up the integral package (SHARK) ... done
Starting the Coulomb interaction ... done ( 0.0 sec)
Making the grid ... done ( 0.2 sec)
Mapping shells ... done
Starting the XC term evaluation ... done ( 0.0 sec)
promolecular density results
# of electrons = 63.997396831
EX = -53.846728817
EC = -2.131042573
EX+EC = -55.977771391
Transforming the Hamiltonian ... done ( 0.0 sec)
Diagonalizing the Hamiltonian ... done ( 0.0 sec)
Back transforming the eigenvectors ... done ( 0.0 sec)
Now organizing SCF variables ... done
------------------
INITIAL GUESS DONE ( 0.3 sec)
------------------
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
Finished Guess after 0.8 sec
Maximum memory used throughout the entire GUESS-calculation: 9.1 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
-------------------------------------------------------------------------------------------
ORCA LEAN-SCF
memory conserving SCF solver
-------------------------------------------------------------------------------------------
----------------------------------------D-I-I-S--------------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP DIISErr Damp Time(sec)
-------------------------------------------------------------------------------------------
*** Starting incremental Fock matrix formation ***
1 -419.7705139892765942 0.00e+00 1.66e-02 1.78e-01 2.39e-01 0.700 0.2
Warning: op=0 Small HOMO/LUMO gap ( 0.085) - skipping pre-diagonalization
Will do a full diagonalization
2 -419.8707080557296081 -1.00e-01 8.78e-03 7.02e-02 7.94e-02 0.700 0.2
***Turning on AO-DIIS***
3 -419.9026432804136562 -3.19e-02 3.36e-03 1.56e-02 2.15e-02 0.700 0.4
4 -419.9230534253684368 -2.04e-02 5.73e-03 3.07e-02 1.74e-02 0.000 0.6
5 -419.9693495857449648 -4.63e-02 1.43e-03 7.15e-03 6.59e-03 0.000 0.2
*** Initializing SOSCF ***
---------------------------------------S-O-S-C-F--------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP MaxGrad Time(sec)
--------------------------------------------------------------------------------------
6 -419.9697581385804028 -4.09e-04 6.15e-04 3.84e-03 1.79e-03 0.7
*** Restarting incremental Fock matrix formation ***
7 -419.9697943771545283 -3.62e-05 5.13e-04 3.23e-03 5.41e-04 0.2
8 -419.9697742358538903 2.01e-05 3.34e-04 4.10e-03 1.49e-03 0.2
9 -419.9698020874594135 -2.79e-05 2.15e-04 1.29e-03 2.20e-04 0.3
10 -419.9697976764675218 4.41e-06 1.27e-04 1.09e-03 4.13e-04 0.6
11 -419.9698031482921010 -5.47e-06 1.09e-04 6.44e-04 1.78e-04 1.4
12 -419.9698025768950060 5.71e-07 6.29e-05 4.81e-04 2.17e-04 0.9
13 -419.9698035533298821 -9.76e-07 1.91e-05 1.26e-04 1.93e-05 0.2
14 -419.9698035217466554 3.16e-08 1.11e-05 8.42e-05 3.10e-05 0.5
15 -419.9698035695245721 -4.78e-08 4.64e-06 3.32e-05 5.62e-06 0.2
16 -419.9698035675590404 1.97e-09 2.72e-06 2.15e-05 8.37e-06 0.2
**** Energy Check signals convergence ****
*****************************************************
* SUCCESS *
* SCF CONVERGED AFTER 16 CYCLES *
*****************************************************
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
----------------
TOTAL SCF ENERGY
----------------
Total Energy : -419.96980356889247 Eh -11427.95934 eV
Components:
Nuclear Repulsion : 400.11155183072702 Eh 10887.58884 eV
Electronic Energy : -820.08135539961950 Eh -22315.54818 eV
One Electron Energy: -1363.74713059367173 Eh -37109.44603 eV
Two Electron Energy: 543.66577519405223 Eh 14793.89785 eV
Virial components:
Potential Energy : -836.29752786572817 Eh -22756.81267 eV
Kinetic Energy : 416.32772429683575 Eh 11328.85333 eV
Virial Ratio : 2.00874810650241
DFT components:
N(Alpha) : 32.000009536031 electrons
N(Beta) : 32.000009536031 electrons
N(Total) : 64.000019072061 electrons
E(X) : -54.678374605139 Eh
E(C) : -2.149043577018 Eh
E(XC) : -56.827418182157 Eh
---------------
SCF CONVERGENCE
---------------
Last Energy change ... -1.9655e-09 Tolerance : 1.0000e-08
Last MAX-Density change ... 2.1550e-05 Tolerance : 1.0000e-07
Last RMS-Density change ... 2.7152e-06 Tolerance : 5.0000e-09
Last DIIS Error ... 1.7878e-03 Tolerance : 5.0000e-07
Last Orbital Gradient ... 8.3663e-06 Tolerance : 1.0000e-05
Last Orbital Rotation ... 1.3937e-05 Tolerance : 1.0000e-05
----------------
ORBITAL ENERGIES
----------------
NO OCC E(Eh) E(eV)
0 2.0000 -18.782904 -511.1088
1 2.0000 -18.741713 -509.9879
2 2.0000 -9.972275 -271.3594
3 2.0000 -9.968222 -271.2491
4 2.0000 -9.916158 -269.8324
5 2.0000 -9.910742 -269.6850
6 2.0000 -9.909290 -269.6455
7 2.0000 -9.906856 -269.5792
8 2.0000 -9.906055 -269.5575
9 2.0000 -0.941176 -25.6107
10 2.0000 -0.907118 -24.6839
11 2.0000 -0.790908 -21.5217
12 2.0000 -0.691821 -18.8254
13 2.0000 -0.687893 -18.7185
14 2.0000 -0.586667 -15.9640
15 2.0000 -0.567858 -15.4522
16 2.0000 -0.523748 -14.2519
17 2.0000 -0.505500 -13.7554
18 2.0000 -0.458766 -12.4837
19 2.0000 -0.427520 -11.6334
20 2.0000 -0.407275 -11.0825
21 2.0000 -0.390958 -10.6385
22 2.0000 -0.382015 -10.3951
23 2.0000 -0.366756 -9.9799
24 2.0000 -0.351643 -9.5687
25 2.0000 -0.335631 -9.1330
26 2.0000 -0.325802 -8.8655
27 2.0000 -0.303093 -8.2476
28 2.0000 -0.259713 -7.0672
29 2.0000 -0.245710 -6.6861
30 2.0000 -0.224593 -6.1115
31 2.0000 -0.200356 -5.4520
32 0.0000 -0.097102 -2.6423
33 0.0000 -0.054252 -1.4763
34 0.0000 -0.010996 -0.2992
35 0.0000 0.018107 0.4927
36 0.0000 0.045754 1.2450
37 0.0000 0.064821 1.7639
38 0.0000 0.091014 2.4766
39 0.0000 0.113504 3.0886
40 0.0000 0.115612 3.1460
41 0.0000 0.128778 3.5042
42 0.0000 0.183241 4.9862
*Only the first 10 virtual orbitals were printed.
********************************
* MULLIKEN POPULATION ANALYSIS *
********************************
-----------------------
MULLIKEN ATOMIC CHARGES
-----------------------
0 C : 0.162063
1 O : -0.229598
2 C : 0.056293
3 C : -0.004324
4 C : -0.011689
5 C : 0.183825
6 O : -0.276281
7 C : -0.001421
8 C : -0.005265
9 H : -0.015126
10 H : -0.001553
11 H : -0.029878
12 H : 0.213210
13 H : -0.018153
14 H : -0.022103
Sum of atomic charges: 0.0000000
--------------------------------
MULLIKEN REDUCED ORBITAL CHARGES
--------------------------------
0 C s : 3.185340 s : 3.185340
pz : 0.815171 p : 2.579276
px : 0.913614
py : 0.850490
dz2 : 0.003893 d : 0.073321
dxz : 0.007316
dyz : 0.008810
dx2y2 : 0.028776
dxy : 0.024526
1 O s : 3.800453 s : 3.800453
pz : 1.285826 p : 4.414549
px : 1.732067
py : 1.396655
dz2 : 0.001623 d : 0.014597
dxz : 0.001047
dyz : 0.003549
dx2y2 : 0.003879
dxy : 0.004498
2 C s : 3.017032 s : 3.017032
pz : 1.024538 p : 2.886646
px : 0.897072
py : 0.965036
dz2 : 0.002854 d : 0.040029
dxz : 0.004357
dyz : 0.006855
dx2y2 : 0.014091
dxy : 0.011873
3 C s : 3.261570 s : 3.261570
pz : 0.916122 p : 2.709570
px : 0.904074
py : 0.889375
dz2 : 0.002194 d : 0.033184
dxz : 0.005471
dyz : 0.003707
dx2y2 : 0.010551
dxy : 0.011260
4 C s : 3.244370 s : 3.244370
pz : 1.011832 p : 2.736614
px : 0.903269
py : 0.821513
dz2 : 0.002240 d : 0.030705
dxz : 0.004781
dyz : 0.003154
dx2y2 : 0.008538
dxy : 0.011992
5 C s : 2.971339 s : 2.971339
pz : 0.983985 p : 2.772743
px : 0.799814
py : 0.988944
dz2 : 0.004679 d : 0.072093
dxz : 0.012514
dyz : 0.007413
dx2y2 : 0.023781
dxy : 0.023706
6 O s : 3.705453 s : 3.705453
pz : 1.480472 p : 4.559968
px : 1.285664
py : 1.793832
dz2 : 0.002342 d : 0.010860
dxz : 0.002521
dyz : 0.001526
dx2y2 : 0.002819
dxy : 0.001652
7 C s : 3.253648 s : 3.253648
pz : 1.015514 p : 2.716911
px : 0.849479
py : 0.851917
dz2 : 0.002298 d : 0.030863
dxz : 0.004753
dyz : 0.003526
dx2y2 : 0.008500
dxy : 0.011786
8 C s : 3.231181 s : 3.231181
pz : 0.962473 p : 2.739868
px : 0.906222
py : 0.871173
dz2 : 0.002248 d : 0.034216
dxz : 0.006417
dyz : 0.003304
dx2y2 : 0.010588
dxy : 0.011658
9 H s : 0.994219 s : 0.994219
pz : 0.003142 p : 0.020907
px : 0.006908
py : 0.010856
10 H s : 0.977598 s : 0.977598
pz : 0.004482 p : 0.023955
px : 0.007750
py : 0.011722
11 H s : 1.006105 s : 1.006105
pz : 0.005338 p : 0.023773
px : 0.006047
py : 0.012388
12 H s : 0.723580 s : 0.723580
pz : 0.026711 p : 0.063210
px : 0.016574
py : 0.019925
13 H s : 0.994728 s : 0.994728
pz : 0.005209 p : 0.023425
px : 0.007059
py : 0.011157
14 H s : 0.998182 s : 0.998182
pz : 0.005146 p : 0.023921
px : 0.006151
py : 0.012624
*******************************
* LOEWDIN POPULATION ANALYSIS *
*******************************
----------------------
LOEWDIN ATOMIC CHARGES
----------------------
0 C : 0.116388
1 O : -0.170484
2 C : -0.095049
3 C : 0.026791
4 C : -0.044303
5 C : 0.054692
6 O : -0.102639
7 C : -0.043908
8 C : 0.002783
9 H : 0.000143
10 H : 0.035707
11 H : 0.029163
12 H : 0.125403
13 H : 0.036062
14 H : 0.029251
-------------------------------
LOEWDIN REDUCED ORBITAL CHARGES
-------------------------------
0 C s : 2.899178 s : 2.899178
pz : 0.798908 p : 2.811527
px : 1.022350
py : 0.990269
dz2 : 0.009975 d : 0.172908
dxz : 0.014213
dyz : 0.015436
dx2y2 : 0.074625
dxy : 0.058658
1 O s : 3.600265 s : 3.600265
pz : 1.285171 p : 4.544970
px : 1.748050
py : 1.511749
dz2 : 0.003611 d : 0.025249
dxz : 0.001273
dyz : 0.004377
dx2y2 : 0.006865
dxy : 0.009124
2 C s : 2.848329 s : 2.848329
pz : 0.997425 p : 3.132439
px : 1.052777
py : 1.082237
dz2 : 0.008560 d : 0.114282
dxz : 0.008662
dyz : 0.014826
dx2y2 : 0.044171
dxy : 0.038063
3 C s : 2.858968 s : 2.858968
pz : 0.910673 p : 3.023548
px : 1.057840
py : 1.055035
dz2 : 0.005947 d : 0.090693
dxz : 0.011513
dyz : 0.007480
dx2y2 : 0.032427
dxy : 0.033326
4 C s : 2.862990 s : 2.862990
pz : 0.990134 p : 3.093948
px : 1.064074
py : 1.039740
dz2 : 0.006453 d : 0.087365
dxz : 0.010082
dyz : 0.006163
dx2y2 : 0.028837
dxy : 0.035830
5 C s : 2.848180 s : 2.848180
pz : 0.954181 p : 2.928577
px : 0.869178
py : 1.105218
dz2 : 0.010850 d : 0.168550
dxz : 0.022034
dyz : 0.015457
dx2y2 : 0.059183
dxy : 0.061026
6 O s : 3.438190 s : 3.438190
pz : 1.525323 p : 4.643077
px : 1.342082
py : 1.775673
dz2 : 0.004622 d : 0.021372
dxz : 0.005174
dyz : 0.002554
dx2y2 : 0.005861
dxy : 0.003162
7 C s : 2.861564 s : 2.861564
pz : 0.999161 p : 3.095343
px : 1.054443
py : 1.041738
dz2 : 0.006505 d : 0.087001
dxz : 0.010166
dyz : 0.006822
dx2y2 : 0.028379
dxy : 0.035128
8 C s : 2.849951 s : 2.849951
pz : 0.944689 p : 3.052464
px : 1.057194
py : 1.050581
dz2 : 0.006096 d : 0.094801
dxz : 0.013808
dyz : 0.006641
dx2y2 : 0.033433
dxy : 0.034823
9 H s : 0.928451 s : 0.928451
pz : 0.010488 p : 0.071406
px : 0.022629
py : 0.038289
10 H s : 0.890789 s : 0.890789
pz : 0.013224 p : 0.073504
px : 0.023770
py : 0.036510
11 H s : 0.897867 s : 0.897867
pz : 0.016353 p : 0.072970
px : 0.019025
py : 0.037592
12 H s : 0.716517 s : 0.716517
pz : 0.071563 p : 0.158080
px : 0.036252
py : 0.050265
13 H s : 0.892608 s : 0.892608
pz : 0.015722 p : 0.071329
px : 0.021565
py : 0.034042
14 H s : 0.899276 s : 0.899276
pz : 0.015132 p : 0.071473
px : 0.018857
py : 0.037484
*****************************
* MAYER POPULATION ANALYSIS *
*****************************
NA - Mulliken gross atomic population
ZA - Total nuclear charge
QA - Mulliken gross atomic charge
VA - Mayer's total valence
BVA - Mayer's bonded valence
FA - Mayer's free valence
ATOM NA ZA QA VA BVA FA
0 C 5.8379 6.0000 0.1621 4.0232 4.0232 0.0000
1 O 8.2296 8.0000 -0.2296 2.2404 2.2404 -0.0000
2 C 5.9437 6.0000 0.0563 3.6215 3.6215 0.0000
3 C 6.0043 6.0000 -0.0043 3.8467 3.8467 0.0000
4 C 6.0117 6.0000 -0.0117 3.8038 3.8038 -0.0000
5 C 5.8162 6.0000 0.1838 3.9000 3.9000 -0.0000
6 O 8.2763 8.0000 -0.2763 2.1396 2.1396 -0.0000
7 C 6.0014 6.0000 -0.0014 3.8021 3.8021 0.0000
8 C 6.0053 6.0000 -0.0053 3.7856 3.7856 -0.0000
9 H 1.0151 1.0000 -0.0151 0.9824 0.9824 0.0000
10 H 1.0016 1.0000 -0.0016 1.0188 1.0188 0.0000
11 H 1.0299 1.0000 -0.0299 0.9968 0.9968 0.0000
12 H 0.7868 1.0000 0.2132 0.9814 0.9814 -0.0000
13 H 1.0182 1.0000 -0.0182 0.9971 0.9971 0.0000
14 H 1.0221 1.0000 -0.0221 0.9880 0.9880 0.0000
Mayer bond orders larger than 0.100000
B( 0-C , 1-O ) : 2.0467 B( 0-C , 2-C ) : 1.0175 B( 0-C , 9-H ) : 0.9573
B( 2-C , 3-C ) : 1.3119 B( 2-C , 8-C ) : 1.3136 B( 3-C , 4-C ) : 1.3744
B( 3-C , 10-H ) : 0.9820 B( 4-C , 5-C ) : 1.3156 B( 4-C , 11-H ) : 0.9974
B( 5-C , 6-O ) : 1.0766 B( 5-C , 7-C ) : 1.3541 B( 6-O , 12-H ) : 0.9328
B( 7-C , 8-C ) : 1.3447 B( 7-C , 13-H ) : 0.9950 B( 8-C , 14-H ) : 0.9879
-------
TIMINGS
-------
Total SCF time: 0 days 0 hours 0 min 8 sec
Total time .... 8.076 sec
Sum of individual times .... 7.688 sec ( 95.2%)
SCF preparation .... 0.594 sec ( 7.3%)
Fock matrix formation .... 4.691 sec ( 58.1%)
Startup .... 0.002 sec ( 0.0% of F)
Split-RI-J .... 0.775 sec ( 16.5% of F)
XC integration .... 3.119 sec ( 66.5% of F)
XC Preparation .... 0.000 sec ( 0.0% of XC)
Basis function eval. .... 0.318 sec ( 10.2% of XC)
Density eval. .... 0.181 sec ( 5.8% of XC)
XC-Functional eval. .... 0.063 sec ( 2.0% of XC)
XC-Potential eval. .... 0.245 sec ( 7.9% of XC)
Diagonalization .... 0.000 sec ( 0.0%)
Density matrix formation .... 0.103 sec ( 1.3%)
Total Energy calculation .... 0.680 sec ( 8.4%)
Population analysis .... 0.027 sec ( 0.3%)
Orbital Transformation .... 0.031 sec ( 0.4%)
Orbital Orthonormalization .... 0.000 sec ( 0.0%)
DIIS solution .... 0.283 sec ( 3.5%)
SOSCF solution .... 1.278 sec ( 15.8%)
Finished LeanSCF after 8.1 sec
Maximum memory used throughout the entire LEANSCF-calculation: 9.1 MB
-------------------------------------------------------------------------------
DFT DISPERSION CORRECTION
DFTD4 V3.4.0
-------------------------------------------------------------------------------
The PBE functional is recognized
Active option DFTDOPT ... 5
------------------------- ----------------
Dispersion correction -0.015465039
------------------------- ----------------
------------------------- --------------------
FINAL SINGLE POINT ENERGY -419.985268608392
------------------------- --------------------
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
ORCA SCF GRADIENT CALCULATION
------------------------------------------------------------------------------
Nuc. rep. gradient (SHARK) ... done ( 0.0 sec)
HCore & Overlap gradient (SHARK) ... done ( 0.0 sec)
Split-RIJ-J gradient (SHARK) ... done ( 0.2 sec)
XC gradient ... done ( 0.4 sec)
Dispersion correction ... done ( 0.1 sec)
-------------------
DISPERSION GRADIENT
-------------------
1 C : -0.000389817 0.000035010 -0.000003425
2 O : -0.000327092 -0.000115382 0.000002934
3 C : -0.000205588 0.000021171 -0.000003560
4 C : -0.000081484 -0.000242702 0.000005997
5 C : 0.000200093 -0.000256164 0.000005659
6 C : 0.000265409 -0.000003989 -0.000000133
7 O : 0.000385941 -0.000037498 0.000021669
8 C : 0.000179750 0.000267568 -0.000016297
9 C : -0.000037131 0.000311440 -0.000015022
10 H : -0.000112605 0.000012356 -0.000001141
11 H : -0.000051728 -0.000110400 0.000003758
12 H : 0.000057221 -0.000111587 0.000001626
13 H : 0.000080108 -0.000006282 0.000009735
14 H : 0.000060668 0.000106151 -0.000006176
15 H : -0.000023745 0.000130309 -0.000005624
Difference to translation invariance:
: -0.0000000000 0.0000000000 0.0000000000
Difference to rotation invariance:
: 0.0000000000 -0.0000000000 -0.0000000000
Norm of the Dispersion gradient ... 0.0009970499
RMS gradient ... 0.0001486314
MAX gradient ... 0.0003898173
------------------
CARTESIAN GRADIENT
------------------
1 C : 0.019700302 0.095667779 -0.003933957
2 O : -0.010502155 -0.057821355 0.002314069
3 C : 0.026054249 -0.004373283 0.000179255
4 C : -0.034167982 0.025481018 -0.000939410
5 C : 0.035322558 -0.010285364 -0.000222506
6 C : -0.049102404 0.020444092 -0.016539309
7 O : -0.015404803 -0.010635135 -0.009921343
8 C : 0.004645555 0.000105105 0.002388972
9 C : -0.021048975 -0.021401718 0.002833657
10 H : 0.008889736 -0.024587604 0.001047264
11 H : 0.014627917 0.005102178 -0.000039197
12 H : -0.012354693 0.018194789 -0.000522193
13 H : 0.028709384 -0.008472323 0.022988618
14 H : -0.007376165 -0.010475794 -0.000193672
15 H : 0.012007473 -0.016942382 0.000559752
Difference to translation invariance:
: -0.0000000000 0.0000000000 -0.0000000000
Difference to rotation invariance:
: -0.0000366452 0.0000498021 0.0000905839
Norm of the Cartesian gradient ... 0.1574822537
RMS gradient ... 0.0234760683
MAX gradient ... 0.0956677786
-------
TIMINGS
-------
Total SCF gradient time .... 0.668 sec
Densities .... 0.000 sec ( 0.1%)
One electron gradient .... 0.022 sec ( 3.3%)
RI-J Coulomb gradient .... 0.188 sec ( 28.1%)
XC gradient .... 0.391 sec ( 58.4%)
Maximum memory used throughout the entire SCFGRAD-calculation: 29.0 MB
------------------------------------------------------------------------------
ORCA GEOMETRY RELAXATION STEP
------------------------------------------------------------------------------
Reading the OPT-File .... done
Getting information on internals .... done
Copying old internal coords+grads .... done
Making the new internal coordinates .... (2022 redundants) done
Validating the new internal coordinates .... (2022 redundants) done
Calculating the B-matrix .... done
Calculating the G,G- and P matrices .... done
Transforming gradient to internals .... done
Projecting the internal gradient .... done
Number of atoms .... 15
Number of internal coordinates .... 67
Current Energy .... -419.985268608 Eh
Current gradient norm .... 0.157482254 Eh/bohr
Maximum allowed component of the step .... 0.300
Current trust radius .... 0.300
Evaluating the initial hessian .... (Almloef) done
Projecting the Hessian .... done
Forming the augmented Hessian .... done
Diagonalizing the augmented Hessian .... done
Last element of RFO vector .... 0.969121641
Lowest eigenvalues of augmented Hessian:
-0.026389094 0.016051859 0.016051915 0.022816211 0.025727104
Length of the computed step .... 0.254439822
The final length of the internal step .... 0.254439822
Converting the step to Cartesian space:
Initial RMS(Int)= 0.0310847717
Transforming coordinates:
Iter 0: RMS(Cart)= 0.0569148048 RMS(Int)= 1.7159724675
Iter 5: RMS(Cart)= 0.0000000735 RMS(Int)= 0.0000000506
done
Storing new coordinates .... done
.--------------------.
----------------------|Geometry convergence|-------------------------
Item value Tolerance Converged
---------------------------------------------------------------------
RMS gradient 0.0144677234 0.0001000000 NO
MAX gradient 0.0561710596 0.0003000000 NO
RMS step 0.0310847717 0.0020000000 NO
MAX step 0.0825410591 0.0040000000 NO
-------------------------------------------------------------------------
........................................................
Max(Bonds) 0.0404 Max(Angles) 4.21
Max(Dihed) 4.73 Max(Improp) 0.00
---------------------------------------------------------------------
The optimization has not yet converged - more geometry cycles are needed
---------------------------------------------------------------------------
Redundant Internal Coordinates
(Angstroem and degrees)
Definition Value dE/dq Step New-Value
----------------------------------------------------------------------------
1. B(O 1,C 0) 1.2759 0.056171 -0.0339 1.2420
2. B(C 2,C 0) 1.4586 -0.017928 0.0185 1.4772
3. B(C 3,C 2) 1.3793 -0.031471 0.0249 1.4042
4. B(C 4,C 3) 1.3987 -0.003495 0.0028 1.4015
5. B(C 5,C 4) 1.3860 -0.026930 0.0211 1.4071
6. B(O 6,C 5) 1.3913 0.015127 -0.0137 1.3776
7. B(C 7,C 5) 1.3848 -0.018884 0.0147 1.3995
8. B(C 8,C 7) 1.3906 -0.011812 0.0098 1.4004
9. B(C 8,C 2) 1.3702 -0.038354 0.0295 1.3997
10. B(H 9,C 0) 1.0816 -0.025525 0.0340 1.1156
11. B(H 10,C 3) 1.0816 -0.011599 0.0154 1.0970
12. B(H 11,C 4) 1.0683 -0.021841 0.0278 1.0961
13. B(H 12,O 6) 1.0127 0.034688 -0.0404 0.9724
14. B(H 13,C 7) 1.0801 -0.012795 0.0169 1.0970
15. B(H 14,C 8) 1.0737 -0.020517 0.0266 1.1002
16. A(O 1,C 0,C 2) 116.84 -0.031924 4.21 121.05
17. A(O 1,C 0,H 9) 119.92 0.010086 -1.14 118.78
18. A(C 2,C 0,H 9) 123.24 0.021838 -3.07 120.17
19. A(C 3,C 2,C 8) 120.00 0.005417 -0.56 119.44
20. A(C 0,C 2,C 8) 122.25 0.005579 -0.78 121.46
21. A(C 0,C 2,C 3) 117.76 -0.010996 1.34 119.10
22. A(C 4,C 3,H 10) 116.26 -0.010590 1.58 117.84
23. A(C 2,C 3,C 4) 120.08 0.000192 -0.02 120.06
24. A(C 2,C 3,H 10) 123.67 0.010399 -1.57 122.10
25. A(C 3,C 4,C 5) 118.43 -0.007644 0.89 119.32
26. A(C 5,C 4,H 11) 121.23 0.006463 -0.84 120.39
27. A(C 3,C 4,H 11) 120.34 0.001181 -0.05 120.29
28. A(O 6,C 5,C 7) 121.51 0.013550 -1.66 119.85
29. A(C 4,C 5,C 7) 122.33 0.005813 -0.86 121.47
30. A(C 4,C 5,O 6) 116.16 -0.019363 2.52 118.68
31. A(C 5,O 6,H 12) 119.47 0.027536 -4.17 115.29
32. A(C 5,C 7,C 8) 117.34 -0.006128 0.77 118.10
33. A(C 8,C 7,H 13) 122.43 0.002682 -0.33 122.10
34. A(C 5,C 7,H 13) 120.24 0.003445 -0.44 119.80
35. A(C 7,C 8,H 14) 117.41 -0.004475 0.60 118.00
36. A(C 2,C 8,C 7) 121.83 0.002350 -0.22 121.61
37. A(C 2,C 8,H 14) 120.77 0.002125 -0.38 120.38
38. D(C 3,C 2,C 0,H 9) -180.00 -0.000044 0.05 -179.95
39. D(C 8,C 2,C 0,O 1) 180.00 0.000085 -0.10 179.90
40. D(C 3,C 2,C 0,O 1) 0.00 -0.000013 0.01 0.01
41. D(C 8,C 2,C 0,H 9) 0.00 0.000054 -0.06 -0.06
42. D(C 4,C 3,C 2,C 8) -0.00 -0.000094 0.09 0.09
43. D(H 10,C 3,C 2,C 0) -0.00 -0.000225 0.23 0.23
44. D(C 4,C 3,C 2,C 0) 180.00 0.000001 -0.01 179.99
45. D(H 10,C 3,C 2,C 8) -180.00 -0.000321 0.33 -179.66
46. D(H 11,C 4,C 3,H 10) -0.00 -0.000406 0.45 0.45
47. D(C 5,C 4,C 3,H 10) 180.00 -0.000046 0.06 180.06
48. D(H 11,C 4,C 3,C 2) -180.00 -0.000616 0.67 -179.33
49. D(C 5,C 4,C 3,C 2) 0.00 -0.000256 0.28 0.28
50. D(C 7,C 5,C 4,C 3) -0.00 0.000356 -0.39 -0.39
51. D(O 6,C 5,C 4,C 3) -180.00 -0.001594 1.70 -178.30
52. D(O 6,C 5,C 4,H 11) -0.00 -0.001230 1.31 1.31
53. D(C 7,C 5,C 4,H 11) 180.00 0.000719 -0.78 179.22
54. D(H 12,O 6,C 5,C 7) 115.92 -0.004114 4.73 120.65
55. D(H 12,O 6,C 5,C 4) -64.08 -0.002182 2.66 -61.43
56. D(H 13,C 7,C 5,O 6) -0.00 0.001689 -1.80 -1.80
57. D(H 13,C 7,C 5,C 4) 180.00 -0.000363 0.40 180.40
58. D(C 8,C 7,C 5,O 6) 180.00 0.001954 -2.08 177.92
59. D(C 8,C 7,C 5,C 4) -0.00 -0.000098 0.12 0.12
60. D(H 14,C 8,C 7,H 13) 0.00 0.000312 -0.33 -0.33
61. D(H 14,C 8,C 7,C 5) -180.00 0.000041 -0.05 -180.04
62. D(C 2,C 8,C 7,H 13) -180.00 0.000002 -0.01 -180.01
63. D(C 2,C 8,C 7,C 5) 0.00 -0.000269 0.27 0.27
64. D(H 14,C 8,C 2,C 3) 180.00 0.000046 -0.05 179.95
65. D(H 14,C 8,C 2,C 0) 0.00 -0.000054 0.06 0.06
66. D(C 7,C 8,C 2,C 3) -0.00 0.000367 -0.38 -0.38
67. D(C 7,C 8,C 2,C 0) -180.00 0.000267 -0.27 -180.27
----------------------------------------------------------------------------
Geometry step timings:
Preparation and reading OPT file: 0.000 s ( 1.301 %)
Internal coordinates : 0.000 s ( 1.239 %)
B/P matrices and projection : 0.001 s (33.333 %)
Hessian update/contruction : 0.000 s (11.214 %)
Making the step : 0.000 s (28.377 %)
Converting the step to Cartesian: 0.000 s ( 3.903 %)
Storing new data : 0.000 s ( 1.983 %)
Checking convergence : 0.000 s ( 1.487 %)
Final printing : 0.000 s (17.162 %)
Total time : 0.002 s
Time for energy+gradient : 12.136 s
Time for complete geometry iter : 12.809 s
*************************************************************
* GEOMETRY OPTIMIZATION CYCLE 2 *
*************************************************************
---------------------------------
CARTESIAN COORDINATES (ANGSTROEM)
---------------------------------
C -2.624709 0.113890 -0.079890
O -3.287910 -0.935618 -0.043148
C -1.147973 0.083075 -0.061781
C -0.491424 -1.156733 -0.002127
C 0.908927 -1.209354 0.015654
C 1.644012 -0.010033 -0.020633
O 3.019797 -0.078497 -0.039180
C 1.007895 1.235082 -0.082365
C -0.392096 1.260349 -0.105026
H -3.164528 1.088978 -0.127905
H -1.040200 -2.106186 0.027877
H 1.425403 -2.175450 0.050834
H 3.425143 -0.502370 0.736381
H 1.608044 2.152739 -0.115910
H -0.890384 2.240130 -0.152780
----------------------------
CARTESIAN COORDINATES (A.U.)
----------------------------
NO LB ZA FRAG MASS X Y Z
0 C 6.0000 0 12.011 -4.959981 0.215220 -0.150970
1 O 8.0000 0 15.999 -6.213249 -1.768061 -0.081538
2 C 6.0000 0 12.011 -2.169354 0.156988 -0.116750
3 C 6.0000 0 12.011 -0.928657 -2.185909 -0.004019
4 C 6.0000 0 12.011 1.717623 -2.285348 0.029582
5 C 6.0000 0 12.011 3.106733 -0.018960 -0.038991
6 O 8.0000 0 15.999 5.706589 -0.148337 -0.074039
7 C 6.0000 0 12.011 1.904646 2.333968 -0.155648
8 C 6.0000 0 12.011 -0.740954 2.381715 -0.198470
9 H 1.0000 0 1.008 -5.980091 2.057870 -0.241706
10 H 1.0000 0 1.008 -1.965693 -3.980115 0.052679
11 H 1.0000 0 1.008 2.693622 -4.111005 0.096062
12 H 1.0000 0 1.008 6.472581 -0.949342 1.391558
13 H 1.0000 0 1.008 3.038763 4.068086 -0.219039
14 H 1.0000 0 1.008 -1.682581 4.233232 -0.288712
--------------------------------
INTERNAL COORDINATES (ANGSTROEM)
--------------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 1.242035120485 0.00000000 0.00000000
C 1 2 0 1.477168678754 121.05206338 0.00000000
C 3 1 2 1.404186051036 119.10213865 0.00000000
C 4 3 1 1.401452435672 120.05881867 179.98227114
C 5 4 3 1.407138141875 119.31807162 0.28909104
O 6 5 4 1.377612193988 118.66541067 181.73564936
C 6 5 4 1.399560088208 121.46378180 359.60445544
C 3 1 2 1.399712508648 121.46247444 179.89618013
H 1 2 3 1.115574952980 118.78152550 179.95773130
H 4 3 1 1.097048584067 122.10144627 0.22849870
H 5 4 3 1.096050405513 120.28809480 180.68703124
H 7 6 5 0.972351649656 115.29280546 298.56145326
H 8 6 5 1.096994207013 119.79506820 180.38652567
H 9 3 1 1.100245933226 120.38216264 0.06176947
---------------------------
INTERNAL COORDINATES (A.U.)
---------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 2.347106226429 0.00000000 0.00000000
C 1 2 0 2.791444256452 121.05206338 0.00000000
C 3 1 2 2.653527077531 119.10213865 0.00000000
C 4 3 1 2.648361293137 120.05881867 179.98227114
C 5 4 3 2.659105720739 119.31807162 0.28909104
O 6 5 4 2.603309765388 118.66541067 181.73564936
C 6 5 4 2.644785274680 121.46378180 359.60445544
C 3 1 2 2.645073307569 121.46247444 179.89618013
H 1 2 3 2.108131142995 118.78152550 179.95773130
H 4 3 1 2.073121379493 122.10144627 0.22849870
H 5 4 3 2.071235095394 120.28809480 180.68703124
H 7 6 5 1.837478323716 115.29280546 298.56145326
H 8 6 5 2.073018621752 119.79506820 180.38652567
H 9 3 1 2.079163493758 120.38216264 0.06176947
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
___
/ \ - P O W E R E D B Y -
/ \
| | | _ _ __ _____ __ __
| | | | | | | / \ | _ \ | | / |
\ \/ | | | | / \ | | | | | | / /
/ \ \ | |__| | / /\ \ | |_| | | |/ /
| | | | __ | / /__\ \ | / | \
| | | | | | | | __ | | \ | |\ \
\ / | | | | | | | | | |\ \ | | \ \
\___/ |_| |_| |__| |__| |_| \__\ |__| \__/
- O R C A' S B I G F R I E N D -
&
- I N T E G R A L F E E D E R -
v1 FN, 2020, v2 2021, v3 2022-2024
------------------------------------------------------------------------------
----------------------
SHARK INTEGRAL PACKAGE
----------------------
Number of atoms ... 15
Number of basis functions ... 156
Number of shells ... 72
Maximum angular momentum ... 2
Integral batch strategy ... SHARK/LIBINT Hybrid
RI-J (if used) integral strategy ... SPLIT-RIJ (Revised 2003 algorithm where possible)
Printlevel ... 1
Contraction scheme used ... SEGMENTED contraction
Prescreening option ... SCHWARTZ
Thresh ... 2.500e-11
Tcut ... 2.500e-12
Tpresel ... 2.500e-12
Coulomb Range Separation ... NOT USED
Exchange Range Separation ... NOT USED
Multipole approximations ... NOT USED
Finite Nucleus Model ... NOT USED
CABS basis ... NOT available
Auxiliary Coulomb fitting basis ... AVAILABLE
# of basis functions in Aux-J ... 507
# of shells in Aux-J ... 165
Maximum angular momentum in Aux-J ... 4
Auxiliary J/K fitting basis ... NOT available
Auxiliary Correlation fitting basis ... NOT available
Auxiliary 'external' fitting basis ... NOT available
Checking pre-screening integrals ... done ( 0.0 sec) Dimension = 72
=> SHARK Basis and OBASIS are compatible. Storing Pre-screening
Shell pair information
Shell pair cut-off parameter TPreSel ... 2.5e-12
Total number of shell pairs ... 2628
Shell pairs after pre-screening ... 2419
Total number of primitive shell pairs ... 9726
Primitive shell pairs kept ... 6530
la=0 lb=0: 714 shell pairs
la=1 lb=0: 870 shell pairs
la=1 lb=1: 280 shell pairs
la=2 lb=0: 315 shell pairs
la=2 lb=1: 199 shell pairs
la=2 lb=2: 41 shell pairs
Checking whether 4 symmetric matrices of dimension 156 fit in memory
:Max Core in MB = 4096.00
MB in use = 6.66
MB left = 4089.34
MB needed = 0.37
Data fit in memory = YES
Calculating RI/J V-Matrix + Cholesky decomp.... done ( 0.1 sec)
Calculating Nuclear repulsion ... done ( 0.0 sec) ENN= 396.338788080221 Eh
Diagonalization of the overlap matrix:
Smallest eigenvalue ... 2.791e-04
Time for diagonalization ... 0.002 sec
Threshold for overlap eigenvalues ... 1.000e-07
Number of eigenvalues below threshold ... 0
Time for construction of square roots ... 0.001 sec
Total time needed ... 0.007 sec
-------------------
DFT GRID GENERATION
-------------------
General Integration Accuracy IntAcc ... 4.388
Radial Grid Type RadialGrid ... OptM3 with GC (2021)
Angular Grid (max. ang.) AngularGrid ... 4 (Lebedev-302)
Angular grid pruning method GridPruning ... 4 (adaptive)
Weight generation scheme WeightScheme... mBecke (2022)
Basis function cutoff BFCut ... 1.0000e-11
Integration weight cutoff WCut ... 1.0000e-14
Partially contracted basis set ... off
Rotationally invariant grid construction ... off
Angular grids for H and He will be reduced by one unit
Total number of grid points ... 73613
Total number of batches ... 1159
Average number of points per batch ... 63
Average number of grid points per atom ... 4908
Grids setup in 0.6 sec
Initializing property integral containers ... done ( 0.0 sec)
SHARK setup successfully completed in 0.8 seconds
Maximum memory used throughout the entire STARTUP-calculation: 19.9 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
Occupation numbers will be reassigned to an Aufbau configuration
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
Finished Guess after 0.6 sec
Maximum memory used throughout the entire GUESS-calculation: 9.2 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
----------------------------------------D-I-I-S--------------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP DIISErr Damp Time(sec)
-------------------------------------------------------------------------------------------
*** Starting incremental Fock matrix formation ***
1 -419.9799588343191772 0.00e+00 3.32e-03 3.00e-02 3.46e-02 0.700 0.3
2 -419.9821687223868594 -2.21e-03 2.71e-03 2.24e-02 2.63e-02 0.700 0.3
***Turning on AO-DIIS***
3 -419.9837471770809998 -1.58e-03 1.94e-03 1.32e-02 1.89e-02 0.700 0.4
4 -419.9848283534745406 -1.08e-03 4.79e-03 3.93e-02 1.33e-02 0.000 0.7
*** Initializing SOSCF ***
---------------------------------------S-O-S-C-F--------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP MaxGrad Time(sec)
--------------------------------------------------------------------------------------
5 -419.9873799563671355 -2.55e-03 2.49e-04 1.88e-03 1.24e-03 0.7
*** Restarting incremental Fock matrix formation ***
6 -419.9873826547689077 -2.70e-06 4.20e-04 4.46e-03 5.31e-04 0.2
7 -419.9873473033322853 3.54e-05 3.42e-04 3.79e-03 1.68e-03 0.2
8 -419.9873874426685916 -4.01e-05 1.82e-04 1.82e-03 1.76e-04 1.0
9 -419.9873836402059624 3.80e-06 1.22e-04 1.11e-03 3.84e-04 0.8
10 -419.9873883414784359 -4.70e-06 4.97e-05 3.06e-04 5.82e-05 1.1
11 -419.9873880187122950 3.23e-07 3.42e-05 2.16e-04 1.07e-04 0.6
12 -419.9873884329557541 -4.14e-07 7.44e-06 6.23e-05 7.28e-06 0.4
13 -419.9873884262794945 6.68e-09 5.02e-06 4.48e-05 1.40e-05 0.1
**** Energy Check signals convergence ****
*****************************************************
* SUCCESS *
* SCF CONVERGED AFTER 13 CYCLES *
*****************************************************
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
----------------
TOTAL SCF ENERGY
----------------
Total Energy : -419.98738843399815 Eh -11428.43785 eV
Components:
Nuclear Repulsion : 396.33878808022087 Eh 10784.92672 eV
Electronic Energy : -816.32617651421901 Eh -22213.36457 eV
One Electron Energy: -1356.11537327542169 Eh -36901.77536 eV
Two Electron Energy: 539.78919676120267 Eh 14688.41079 eV
Virial components:
Potential Energy : -836.04156527283226 Eh -22749.84757 eV
Kinetic Energy : 416.05417683883411 Eh 11321.40972 eV
Virial Ratio : 2.00945360439606
DFT components:
N(Alpha) : 32.000014148902 electrons
N(Beta) : 32.000014148902 electrons
N(Total) : 64.000028297803 electrons
E(X) : -54.617608791668 Eh
E(C) : -2.144833544007 Eh
E(XC) : -56.762442335675 Eh
---------------
SCF CONVERGENCE
---------------
Last Energy change ... -6.6763e-09 Tolerance : 1.0000e-08
Last MAX-Density change ... 4.4805e-05 Tolerance : 1.0000e-07
Last RMS-Density change ... 5.0201e-06 Tolerance : 5.0000e-09
Last DIIS Error ... 1.2419e-03 Tolerance : 5.0000e-07
Last Orbital Gradient ... 1.3952e-05 Tolerance : 1.0000e-05
Last Orbital Rotation ... 2.4699e-05 Tolerance : 1.0000e-05
Total SCF time: 0 days 0 hours 0 min 7 sec
Finished LeanSCF after 7.6 sec
Maximum memory used throughout the entire LEANSCF-calculation: 9.1 MB
-------------------------------------------------------------------------------
DFT DISPERSION CORRECTION
DFTD4 V3.4.0
-------------------------------------------------------------------------------
------------------------- ----------------
Dispersion correction -0.015294148
------------------------- ----------------
------------------------- --------------------
FINAL SINGLE POINT ENERGY -420.002682582115
------------------------- --------------------
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
ORCA SCF GRADIENT CALCULATION
------------------------------------------------------------------------------
Nuc. rep. gradient (SHARK) ... done ( 0.0 sec)
HCore & Overlap gradient (SHARK) ... done ( 0.1 sec)
Split-RIJ-J gradient (SHARK) ... done ( 0.3 sec)
XC gradient ... done ( 0.6 sec)
Dispersion correction ... done ( 0.0 sec)
-------------------
DISPERSION GRADIENT
-------------------
1 C : -0.000385355 0.000034168 -0.000005434
2 O : -0.000330997 -0.000098724 0.000000740
3 C : -0.000210738 0.000016920 -0.000003994
4 C : -0.000069906 -0.000261545 0.000007913
5 C : 0.000193155 -0.000263147 0.000008706
6 C : 0.000268550 -0.000003882 0.000002608
7 O : 0.000382370 -0.000024303 0.000015641
8 C : 0.000181168 0.000268360 -0.000013731
9 C : -0.000041430 0.000316350 -0.000015290
10 H : -0.000111009 0.000012080 -0.000001734
11 H : -0.000044199 -0.000112589 0.000003757
12 H : 0.000053324 -0.000110703 0.000001895
13 H : 0.000079423 -0.000005725 0.000010565
14 H : 0.000058958 0.000103917 -0.000005558
15 H : -0.000023314 0.000128823 -0.000006082
Difference to translation invariance:
: 0.0000000000 0.0000000000 0.0000000000
Difference to rotation invariance:
: 0.0000000000 -0.0000000000 -0.0000000000
Norm of the Dispersion gradient ... 0.0010000454
RMS gradient ... 0.0001490780
MAX gradient ... 0.0003853551
------------------
CARTESIAN GRADIENT
------------------
1 C : 0.013556350 0.039359661 -0.001400247
2 O : -0.008150917 -0.022078232 0.000766038
3 C : 0.008819940 -0.004386904 0.000274042
4 C : -0.016854852 0.009378623 -0.000836169
5 C : 0.015648476 -0.004055557 -0.001454611
6 C : -0.022070372 0.013614060 -0.007244563
7 O : -0.001279503 -0.016200822 0.007312318
8 C : 0.005585129 0.000976925 0.002268070
9 C : -0.006659386 -0.011372102 0.001177612
10 H : -0.003275283 -0.009383112 0.000340045
11 H : 0.007174307 -0.002181220 0.000301511
12 H : -0.002923831 0.001225648 0.000108931
13 H : 0.008248778 0.005867124 -0.001278033
14 H : -0.001070374 -0.000610086 -0.000280441
15 H : 0.003251538 -0.000154004 -0.000054503
Difference to translation invariance:
: -0.0000000000 0.0000000000 -0.0000000000
Difference to rotation invariance:
: -0.0000156136 0.0000171197 0.0001260025
Norm of the Cartesian gradient ... 0.0675211029
RMS gradient ... 0.0100654517
MAX gradient ... 0.0393596607
-------
TIMINGS
-------
Total SCF gradient time .... 0.960 sec
Densities .... 0.000 sec ( 0.0%)
One electron gradient .... 0.061 sec ( 6.3%)
RI-J Coulomb gradient .... 0.299 sec ( 31.1%)
XC gradient .... 0.558 sec ( 58.1%)
Maximum memory used throughout the entire SCFGRAD-calculation: 29.0 MB
------------------------------------------------------------------------------
ORCA GEOMETRY RELAXATION STEP
------------------------------------------------------------------------------
Reading the OPT-File .... done
Getting information on internals .... done
Copying old internal coords+grads .... done
Making the new internal coordinates .... (2022 redundants) done
Validating the new internal coordinates .... (2022 redundants) done
Calculating the B-matrix .... done
Calculating the G,G- and P matrices .... done
Transforming gradient to internals .... done
Projecting the internal gradient .... done
Number of atoms .... 15
Number of internal coordinates .... 67
Current Energy .... -420.002682582 Eh
Current gradient norm .... 0.067521103 Eh/bohr
Maximum allowed component of the step .... 0.300
Current trust radius .... 0.300
Updating the Hessian (BFGS) .... done
Forming the augmented Hessian .... done
Diagonalizing the augmented Hessian .... done
Last element of RFO vector .... 0.957558631
Lowest eigenvalues of augmented Hessian:
-0.007804886 0.016051864 0.016053156 0.023670088 0.025727066
Length of the computed step .... 0.301014009
Warning: the length of the step is outside the trust region - taking restricted step instead
The input lambda is .... 0.015052
iter: 5 x= -0.006760 g= 8.379871 f(x)= 0.031978
iter: 10 x= -0.007929 g= 4.876503 f(x)= -0.000000
The output lambda is .... -0.007929 (10 iterations)
The final length of the internal step .... 0.300000000
Converting the step to Cartesian space:
Initial RMS(Int)= 0.0366508333
Transforming coordinates:
Iter 0: RMS(Cart)= 0.0444536103 RMS(Int)= 1.7161110351
Iter 5: RMS(Cart)= 0.0000043885 RMS(Int)= 0.0000035159
done
Storing new coordinates .... done
The predicted energy change is .... -0.004253644
Previously predicted energy change .... -0.014048757
Actually observed energy change .... -0.017413974
Ratio of predicted to observed change .... 1.239538407
New trust radius .... 0.450000000
.--------------------.
----------------------|Geometry convergence|-------------------------
Item value Tolerance Converged
---------------------------------------------------------------------
Energy change -0.0174139737 0.0000050000 NO
RMS gradient 0.0052691391 0.0001000000 NO
MAX gradient 0.0230291121 0.0003000000 NO
RMS step 0.0366508333 0.0020000000 NO
MAX step 0.1887480064 0.0040000000 NO
-------------------------------------------------------------------------
........................................................
Max(Bonds) 0.0246 Max(Angles) 4.17
Max(Dihed) 10.81 Max(Improp) 0.00
---------------------------------------------------------------------
The optimization has not yet converged - more geometry cycles are needed
---------------------------------------------------------------------------
Redundant Internal Coordinates
(Angstroem and degrees)
Definition Value dE/dq Step New-Value
----------------------------------------------------------------------------
1. B(O 1,C 0) 1.2420 0.023029 -0.0246 1.2175
2. B(C 2,C 0) 1.4772 -0.001961 0.0050 1.4822
3. B(C 3,C 2) 1.4042 -0.006421 0.0103 1.4145
4. B(C 4,C 3) 1.4015 0.002736 -0.0032 1.3982
5. B(C 5,C 4) 1.4071 -0.006066 0.0095 1.4166
6. B(O 6,C 5) 1.3776 0.007392 -0.0116 1.3661
7. B(C 7,C 5) 1.3996 -0.006064 0.0088 1.4084
8. B(C 8,C 7) 1.4004 -0.000551 0.0019 1.4023
9. B(C 8,C 2) 1.3997 -0.008004 0.0125 1.4122
10. B(H 9,C 0) 1.1156 -0.006630 0.0167 1.1323
11. B(H 10,C 3) 1.0970 -0.001693 0.0049 1.1020
12. B(H 11,C 4) 1.0961 -0.002454 0.0075 1.1035
13. B(H 12,O 6) 0.9724 -0.000137 -0.0039 0.9685
14. B(H 13,C 7) 1.0970 -0.001087 0.0038 1.1008
15. B(H 14,C 8) 1.1002 -0.001608 0.0058 1.1060
16. A(O 1,C 0,C 2) 121.05 -0.012876 3.03 124.09
17. A(O 1,C 0,H 9) 118.78 -0.001371 0.42 119.20
18. A(C 2,C 0,H 9) 120.17 0.014247 -3.45 116.72
19. A(C 3,C 2,C 8) 119.44 0.000935 -0.21 119.23
20. A(C 0,C 2,C 8) 121.46 0.001992 -0.48 120.98
21. A(C 0,C 2,C 3) 119.10 -0.002927 0.69 119.79
22. A(C 4,C 3,H 10) 117.84 -0.007300 1.84 119.68
23. A(C 2,C 3,C 4) 120.06 -0.000551 0.09 120.15
24. A(C 2,C 3,H 10) 122.10 0.007852 -1.93 120.17
25. A(C 3,C 4,C 5) 119.32 -0.003241 0.68 120.00
26. A(C 5,C 4,H 11) 120.39 0.003695 -0.85 119.54
27. A(C 3,C 4,H 11) 120.29 -0.000453 0.17 120.45
28. A(O 6,C 5,C 7) 119.84 0.005198 -1.16 118.67
29. A(C 4,C 5,C 7) 121.46 0.004822 -1.04 120.42
30. A(C 4,C 5,O 6) 118.67 -0.010000 2.19 120.85
31. A(C 5,O 6,H 12) 115.29 0.016302 -4.17 111.12
32. A(C 5,C 7,C 8) 118.11 -0.004187 0.91 119.02
33. A(C 8,C 7,H 13) 122.10 0.001503 -0.32 121.78
34. A(C 5,C 7,H 13) 119.80 0.002685 -0.60 119.20
35. A(C 7,C 8,H 14) 118.00 -0.004054 0.93 118.93
36. A(C 2,C 8,C 7) 121.61 0.002223 -0.43 121.18
37. A(C 2,C 8,H 14) 120.38 0.001832 -0.50 119.88
38. D(C 3,C 2,C 0,H 9) -179.95 0.000011 -0.06 -180.01
39. D(C 8,C 2,C 0,O 1) 179.90 -0.000061 0.26 180.16
40. D(C 3,C 2,C 0,O 1) 0.01 -0.000086 0.29 0.29
41. D(C 8,C 2,C 0,H 9) -0.06 0.000035 -0.09 -0.15
42. D(C 4,C 3,C 2,C 8) 0.09 0.000047 -0.13 -0.04
43. D(H 10,C 3,C 2,C 0) 0.23 -0.000129 0.25 0.48
44. D(C 4,C 3,C 2,C 0) 179.98 0.000072 -0.15 179.83
45. D(H 10,C 3,C 2,C 8) -179.66 -0.000154 0.27 -179.39
46. D(H 11,C 4,C 3,H 10) 0.45 -0.000121 0.15 0.60
47. D(C 5,C 4,C 3,H 10) -179.95 0.000047 -0.08 -180.03
48. D(H 11,C 4,C 3,C 2) -179.31 -0.000350 0.52 -178.79
49. D(C 5,C 4,C 3,C 2) 0.29 -0.000182 0.30 0.59
50. D(C 7,C 5,C 4,C 3) -0.40 0.000130 -0.20 -0.60
51. D(O 6,C 5,C 4,C 3) -178.26 -0.000603 0.73 -177.54
52. D(O 6,C 5,C 4,H 11) 1.34 -0.000453 0.50 1.84
53. D(C 7,C 5,C 4,H 11) 179.21 0.000281 -0.43 178.78
54. D(H 12,O 6,C 5,C 7) 120.66 -0.004540 10.81 131.47
55. D(H 12,O 6,C 5,C 4) -61.44 -0.003820 9.91 -51.53
56. D(H 13,C 7,C 5,O 6) -1.77 0.000444 -0.92 -2.69
57. D(H 13,C 7,C 5,C 4) -179.61 0.000020 0.01 -179.61
58. D(C 8,C 7,C 5,O 6) 177.96 0.000474 -0.99 176.97
59. D(C 8,C 7,C 5,C 4) 0.11 0.000050 -0.07 0.05
60. D(H 14,C 8,C 7,H 13) -0.33 0.000054 -0.08 -0.41
61. D(H 14,C 8,C 7,C 5) 179.95 0.000020 -0.01 179.95
62. D(C 2,C 8,C 7,H 13) 180.00 -0.000124 0.17 180.17
63. D(C 2,C 8,C 7,C 5) 0.28 -0.000158 0.24 0.52
64. D(H 14,C 8,C 2,C 3) 179.95 -0.000049 0.11 180.06
65. D(H 14,C 8,C 2,C 0) 0.06 -0.000069 0.13 0.20
66. D(C 7,C 8,C 2,C 3) -0.38 0.000114 -0.15 -0.53
67. D(C 7,C 8,C 2,C 0) 179.73 0.000094 -0.12 179.60
----------------------------------------------------------------------------
Geometry step timings:
Preparation and reading OPT file: 0.000 s ( 0.953 %)
Internal coordinates : 0.000 s ( 1.003 %)
B/P matrices and projection : 0.001 s (25.627 %)
Hessian update/contruction : 0.000 s (10.532 %)
Making the step : 0.001 s (40.221 %)
Converting the step to Cartesian: 0.000 s ( 3.761 %)
Storing new data : 0.000 s ( 1.655 %)
Checking convergence : 0.000 s ( 1.805 %)
Final printing : 0.000 s (14.393 %)
Total time : 0.002 s
Time for energy+gradient : 11.867 s
Time for complete geometry iter : 12.505 s
*************************************************************
* GEOMETRY OPTIMIZATION CYCLE 3 *
*************************************************************
---------------------------------
CARTESIAN COORDINATES (ANGSTROEM)
---------------------------------
C -2.632005 0.093027 -0.087396
O -3.334176 -0.900764 -0.047443
C -1.150350 0.064839 -0.060396
C -0.472107 -1.174449 0.009875
C 0.925483 -1.209648 0.032178
C 1.665171 -0.001991 -0.002901
O 3.030811 -0.017834 -0.032892
C 1.002177 1.238627 -0.073019
C -0.399528 1.260007 -0.106718
H -3.120842 1.112824 -0.143758
H -1.042217 -2.117109 0.036718
H 1.460187 -2.174370 0.066549
H 3.389019 -0.572597 0.675569
H 1.597041 2.164320 -0.105561
H -0.918665 2.235117 -0.160804
----------------------------
CARTESIAN COORDINATES (A.U.)
----------------------------
NO LB ZA FRAG MASS X Y Z
0 C 6.0000 0 12.011 -4.973769 0.175795 -0.165154
1 O 8.0000 0 15.999 -6.300679 -1.702196 -0.089655
2 C 6.0000 0 12.011 -2.173847 0.122529 -0.114131
3 C 6.0000 0 12.011 -0.892153 -2.219387 0.018661
4 C 6.0000 0 12.011 1.748909 -2.285903 0.060807
5 C 6.0000 0 12.011 3.146717 -0.003762 -0.005482
6 O 8.0000 0 15.999 5.727404 -0.033702 -0.062156
7 C 6.0000 0 12.011 1.893840 2.340666 -0.137985
8 C 6.0000 0 12.011 -0.754998 2.381068 -0.201668
9 H 1.0000 0 1.008 -5.897537 2.102932 -0.271664
10 H 1.0000 0 1.008 -1.969504 -4.000756 0.069387
11 H 1.0000 0 1.008 2.759354 -4.108963 0.125760
12 H 1.0000 0 1.008 6.404318 -1.082051 1.276640
13 H 1.0000 0 1.008 3.017970 4.089973 -0.199482
14 H 1.0000 0 1.008 -1.736026 4.223759 -0.303876
--------------------------------
INTERNAL COORDINATES (ANGSTROEM)
--------------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 1.217480752397 0.00000000 0.00000000
C 1 2 0 1.482168874852 124.08480185 0.00000000
C 3 1 2 1.414491855589 119.79490067 0.29447493
C 4 3 1 1.398210793251 120.14112052 179.83096610
C 5 4 3 1.416617565684 120.00418272 0.59534587
O 6 5 4 1.366061636747 120.84028586 182.49365085
C 6 5 4 1.408407020956 120.42218156 359.39919006
C 8 6 5 1.402272699430 119.02403196 0.03779782
H 1 2 3 1.132309282875 119.19632545 180.31647518
H 4 3 1 1.101976809954 120.17298458 0.46814128
H 5 4 3 1.103529824244 120.45287974 181.22896936
H 7 6 5 0.968498967710 111.12037410 308.44881337
H 8 6 5 1.100831850864 119.19724535 180.37646986
H 9 8 6 1.106014660855 118.93412803 179.94206426
---------------------------
INTERNAL COORDINATES (A.U.)
---------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 2.300705195351 0.00000000 0.00000000
C 1 2 0 2.800893257693 124.08480185 0.00000000
C 3 1 2 2.673002225726 119.79490067 0.29447493
C 4 3 1 2.642235476736 120.14112052 179.83096610
C 5 4 3 2.677019235645 120.00418272 0.59534587
O 6 5 4 2.581482375508 120.84028586 182.49365085
C 6 5 4 2.661503554699 120.42218156 359.39919006
C 8 6 5 2.649911366996 119.02403196 0.03779782
H 1 2 3 2.139754443531 119.19632545 180.31647518
H 4 3 1 2.082434376745 120.17298458 0.46814128
H 5 4 3 2.085369148435 120.45287974 181.22896936
H 7 6 5 1.830197809957 111.12037410 308.44881337
H 8 6 5 2.080270717630 119.19724535 180.37646986
H 9 8 6 2.090064809118 118.93412803 179.94206426
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
___
/ \ - P O W E R E D B Y -
/ \
| | | _ _ __ _____ __ __
| | | | | | | / \ | _ \ | | / |
\ \/ | | | | / \ | | | | | | / /
/ \ \ | |__| | / /\ \ | |_| | | |/ /
| | | | __ | / /__\ \ | / | \
| | | | | | | | __ | | \ | |\ \
\ / | | | | | | | | | |\ \ | | \ \
\___/ |_| |_| |__| |__| |_| \__\ |__| \__/
- O R C A' S B I G F R I E N D -
&
- I N T E G R A L F E E D E R -
v1 FN, 2020, v2 2021, v3 2022-2024
------------------------------------------------------------------------------
----------------------
SHARK INTEGRAL PACKAGE
----------------------
Number of atoms ... 15
Number of basis functions ... 156
Number of shells ... 72
Maximum angular momentum ... 2
Integral batch strategy ... SHARK/LIBINT Hybrid
RI-J (if used) integral strategy ... SPLIT-RIJ (Revised 2003 algorithm where possible)
Printlevel ... 1
Contraction scheme used ... SEGMENTED contraction
Prescreening option ... SCHWARTZ
Thresh ... 2.500e-11
Tcut ... 2.500e-12
Tpresel ... 2.500e-12
Coulomb Range Separation ... NOT USED
Exchange Range Separation ... NOT USED
Multipole approximations ... NOT USED
Finite Nucleus Model ... NOT USED
CABS basis ... NOT available
Auxiliary Coulomb fitting basis ... AVAILABLE
# of basis functions in Aux-J ... 507
# of shells in Aux-J ... 165
Maximum angular momentum in Aux-J ... 4
Auxiliary J/K fitting basis ... NOT available
Auxiliary Correlation fitting basis ... NOT available
Auxiliary 'external' fitting basis ... NOT available
Checking pre-screening integrals ... done ( 0.0 sec) Dimension = 72
=> SHARK Basis and OBASIS are compatible. Storing Pre-screening
Shell pair information
Shell pair cut-off parameter TPreSel ... 2.5e-12
Total number of shell pairs ... 2628
Shell pairs after pre-screening ... 2416
Total number of primitive shell pairs ... 9726
Primitive shell pairs kept ... 6521
la=0 lb=0: 714 shell pairs
la=1 lb=0: 869 shell pairs
la=1 lb=1: 279 shell pairs
la=2 lb=0: 315 shell pairs
la=2 lb=1: 198 shell pairs
la=2 lb=2: 41 shell pairs
Checking whether 4 symmetric matrices of dimension 156 fit in memory
:Max Core in MB = 4096.00
MB in use = 6.66
MB left = 4089.34
MB needed = 0.37
Data fit in memory = YES
Calculating RI/J V-Matrix + Cholesky decomp.... done ( 0.0 sec)
Calculating Nuclear repulsion ... done ( 0.0 sec) ENN= 395.309129047163 Eh
Diagonalization of the overlap matrix:
Smallest eigenvalue ... 2.884e-04
Time for diagonalization ... 0.002 sec
Threshold for overlap eigenvalues ... 1.000e-07
Number of eigenvalues below threshold ... 0
Time for construction of square roots ... 0.002 sec
Total time needed ... 0.005 sec
-------------------
DFT GRID GENERATION
-------------------
General Integration Accuracy IntAcc ... 4.388
Radial Grid Type RadialGrid ... OptM3 with GC (2021)
Angular Grid (max. ang.) AngularGrid ... 4 (Lebedev-302)
Angular grid pruning method GridPruning ... 4 (adaptive)
Weight generation scheme WeightScheme... mBecke (2022)
Basis function cutoff BFCut ... 1.0000e-11
Integration weight cutoff WCut ... 1.0000e-14
Partially contracted basis set ... off
Rotationally invariant grid construction ... off
Angular grids for H and He will be reduced by one unit
Total number of grid points ... 73622
Total number of batches ... 1158
Average number of points per batch ... 63
Average number of grid points per atom ... 4908
Grids setup in 0.6 sec
Initializing property integral containers ... done ( 0.0 sec)
SHARK setup successfully completed in 0.7 seconds
Maximum memory used throughout the entire STARTUP-calculation: 19.9 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
Occupation numbers will be reassigned to an Aufbau configuration
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
Finished Guess after 0.6 sec
Maximum memory used throughout the entire GUESS-calculation: 9.2 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
----------------------------------------D-I-I-S--------------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP DIISErr Damp Time(sec)
-------------------------------------------------------------------------------------------
*** Starting incremental Fock matrix formation ***
1 -419.9860845054639071 0.00e+00 1.85e-03 1.97e-02 3.67e-02 0.700 0.3
2 -419.9880237132190928 -1.94e-03 1.60e-03 1.74e-02 2.75e-02 0.700 0.2
***Turning on AO-DIIS***
3 -419.9894509606206725 -1.43e-03 1.18e-03 1.25e-02 1.96e-02 0.700 0.3
4 -419.9904378513912775 -9.87e-04 2.88e-03 2.97e-02 1.39e-02 0.000 0.5
*** Initializing SOSCF ***
---------------------------------------S-O-S-C-F--------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP MaxGrad Time(sec)
--------------------------------------------------------------------------------------
5 -419.9927527317907447 -2.31e-03 1.91e-04 1.87e-03 1.56e-03 0.8
*** Restarting incremental Fock matrix formation ***
6 -419.9927531749097511 -4.43e-07 4.39e-04 5.05e-03 6.15e-04 0.1
7 -419.9927166841102348 3.65e-05 3.53e-04 4.44e-03 1.93e-03 0.1
8 -419.9927580991285936 -4.14e-05 1.07e-04 9.89e-04 9.88e-05 0.7
9 -419.9927568212020219 1.28e-06 6.96e-05 5.21e-04 2.18e-04 0.2
10 -419.9927584730234571 -1.65e-06 3.29e-05 2.07e-04 4.65e-05 0.1
11 -419.9927583275437541 1.45e-07 2.27e-05 1.50e-04 7.97e-05 0.1
12 -419.9927585150023219 -1.87e-07 4.66e-06 3.45e-05 1.03e-05 0.1
13 -419.9927585096360758 5.37e-09 3.38e-06 2.39e-05 2.50e-05 0.1
**** Energy Check signals convergence ****
*****************************************************
* SUCCESS *
* SCF CONVERGED AFTER 13 CYCLES *
*****************************************************
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
----------------
TOTAL SCF ENERGY
----------------
Total Energy : -419.99275851664930 Eh -11428.58398 eV
Components:
Nuclear Repulsion : 395.30912904716325 Eh 10756.90827 eV
Electronic Energy : -815.30188756381256 Eh -22185.49225 eV
One Electron Energy: -1353.94636335701739 Eh -36842.75360 eV
Two Electron Energy: 538.64447579320483 Eh 14657.26135 eV
Virial components:
Potential Energy : -836.00683704053290 Eh -22748.90257 eV
Kinetic Energy : 416.01407852388360 Eh 11320.31859 eV
Virial Ratio : 2.00956381093371
DFT components:
N(Alpha) : 32.000006360322 electrons
N(Beta) : 32.000006360322 electrons
N(Total) : 64.000012720644 electrons
E(X) : -54.605099224219 Eh
E(C) : -2.144053733120 Eh
E(XC) : -56.749152957339 Eh
---------------
SCF CONVERGENCE
---------------
Last Energy change ... -5.3662e-09 Tolerance : 1.0000e-08
Last MAX-Density change ... 2.3894e-05 Tolerance : 1.0000e-07
Last RMS-Density change ... 3.3768e-06 Tolerance : 5.0000e-09
Last DIIS Error ... 1.5619e-03 Tolerance : 5.0000e-07
Last Orbital Gradient ... 2.4994e-05 Tolerance : 1.0000e-05
Last Orbital Rotation ... 3.8012e-05 Tolerance : 1.0000e-05
Total SCF time: 0 days 0 hours 0 min 4 sec
Finished LeanSCF after 4.7 sec
Maximum memory used throughout the entire LEANSCF-calculation: 9.2 MB
-------------------------------------------------------------------------------
DFT DISPERSION CORRECTION
DFTD4 V3.4.0
-------------------------------------------------------------------------------
------------------------- ----------------
Dispersion correction -0.015244351
------------------------- ----------------
------------------------- --------------------
FINAL SINGLE POINT ENERGY -420.008002867414
------------------------- --------------------
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
ORCA SCF GRADIENT CALCULATION
------------------------------------------------------------------------------
Nuc. rep. gradient (SHARK) ... done ( 0.0 sec)
HCore & Overlap gradient (SHARK) ... done ( 0.0 sec)
Split-RIJ-J gradient (SHARK) ... done ( 0.3 sec)
XC gradient ... done ( 0.6 sec)
Dispersion correction ... done ( 0.1 sec)
-------------------
DISPERSION GRADIENT
-------------------
1 C : -0.000382372 0.000031607 -0.000007750
2 O : -0.000334219 -0.000091603 -0.000000484
3 C : -0.000212707 0.000013620 -0.000004825
4 C : -0.000062382 -0.000270234 0.000009769
5 C : 0.000192409 -0.000264558 0.000011921
6 C : 0.000271274 -0.000002646 0.000004579
7 O : 0.000380905 -0.000017883 0.000016276
8 C : 0.000180942 0.000268306 -0.000012426
9 C : -0.000046767 0.000317294 -0.000016602
10 H : -0.000110639 0.000011850 -0.000002395
11 H : -0.000041515 -0.000113093 0.000004031
12 H : 0.000052413 -0.000110192 0.000002543
13 H : 0.000078396 -0.000003265 0.000007220
14 H : 0.000058554 0.000102838 -0.000005069
15 H : -0.000024292 0.000127960 -0.000006786
Difference to translation invariance:
: -0.0000000000 -0.0000000000 -0.0000000000
Difference to rotation invariance:
: 0.0000000000 0.0000000000 -0.0000000000
Norm of the Dispersion gradient ... 0.0010016764
RMS gradient ... 0.0001493211
MAX gradient ... 0.0003823725
------------------
CARTESIAN GRADIENT
------------------
1 C : -0.000188123 -0.001489572 -0.000457352
2 O : 0.003619616 0.006841149 -0.000108014
3 C : 0.000126331 -0.002165697 0.000289309
4 C : -0.005987929 0.000789525 -0.000332598
5 C : 0.003605045 -0.001834362 -0.002194942
6 C : -0.002672795 0.005818461 -0.000260021
7 O : -0.000448757 -0.012465563 0.001789046
8 C : 0.004374540 0.001692258 0.002279156
9 C : -0.001637966 -0.002523559 0.000138762
10 H : -0.004771820 -0.002567181 0.000258561
11 H : 0.002572477 -0.002845185 0.000182458
12 H : 0.000024417 -0.001776365 0.000111374
13 H : 0.000785607 0.008535345 -0.001349084
14 H : 0.000194769 0.001233720 -0.000190186
15 H : 0.000404587 0.002757026 -0.000156470
Difference to translation invariance:
: 0.0000000000 0.0000000000 0.0000000000
Difference to rotation invariance:
: -0.0000131269 -0.0000172573 0.0001036498
Norm of the Cartesian gradient ... 0.0222053315
RMS gradient ... 0.0033101754
MAX gradient ... 0.0124655634
-------
TIMINGS
-------
Total SCF gradient time .... 1.025 sec
Densities .... 0.000 sec ( 0.0%)
One electron gradient .... 0.046 sec ( 4.5%)
RI-J Coulomb gradient .... 0.297 sec ( 28.9%)
XC gradient .... 0.610 sec ( 59.5%)
Maximum memory used throughout the entire SCFGRAD-calculation: 29.0 MB
------------------------------------------------------------------------------
ORCA GEOMETRY RELAXATION STEP
------------------------------------------------------------------------------
Reading the OPT-File .... done
Getting information on internals .... done
Copying old internal coords+grads .... done
Making the new internal coordinates .... (2022 redundants) done
Validating the new internal coordinates .... (2022 redundants) done
Calculating the B-matrix .... done
Calculating the G,G- and P matrices .... done
Transforming gradient to internals .... done
Projecting the internal gradient .... done
Number of atoms .... 15
Number of internal coordinates .... 67
Current Energy .... -420.008002867 Eh
Current gradient norm .... 0.022205332 Eh/bohr
Maximum allowed component of the step .... 0.300
Current trust radius .... 0.450
Updating the Hessian (BFGS) .... done
Forming the augmented Hessian .... done
Diagonalizing the augmented Hessian .... done
Last element of RFO vector .... 0.911457793
Lowest eigenvalues of augmented Hessian:
-0.004394044 0.016051258 0.016080955 0.017721853 0.025726944
Length of the computed step .... 0.451357815
Warning: the length of the step is outside the trust region - taking restricted step instead
The input lambda is .... 0.013004
iter: 5 x= 0.006727 g= 1107.102122 f(x)= 2.553947
iter: 10 x= -0.004447 g= 22.380407 f(x)= 0.004150
The output lambda is .... -0.004450 (13 iterations)
The final length of the internal step .... 0.439528298
Converting the step to Cartesian space:
Initial RMS(Int)= 0.0536969280
Transforming coordinates:
Iter 0: RMS(Cart)= 0.0653079548 RMS(Int)= 1.0847469590
Iter 5: RMS(Cart)= 0.0000702753 RMS(Int)= 0.0000543730
Iter 10: RMS(Cart)= 0.0000001479 RMS(Int)= 0.0000001236
done
Storing new coordinates .... done
The predicted energy change is .... -0.002571950
Previously predicted energy change .... -0.004253644
Actually observed energy change .... -0.005320285
Ratio of predicted to observed change .... 1.250759365
New trust radius .... 0.450000000
.--------------------.
----------------------|Geometry convergence|-------------------------
Item value Tolerance Converged
---------------------------------------------------------------------
Energy change -0.0053202853 0.0000050000 NO
RMS gradient 0.0022914681 0.0001000000 NO
MAX gradient 0.0076766808 0.0003000000 NO
RMS step 0.0536969280 0.0020000000 NO
MAX step 0.3000000000 0.0040000000 NO
-------------------------------------------------------------------------
........................................................
Max(Bonds) 0.0100 Max(Angles) 3.12
Max(Dihed) 17.19 Max(Improp) 0.00
---------------------------------------------------------------------
The optimization has not yet converged - more geometry cycles are needed
---------------------------------------------------------------------------
Redundant Internal Coordinates
(Angstroem and degrees)
Definition Value dE/dq Step New-Value
----------------------------------------------------------------------------
1. B(O 1,C 0) 1.2175 -0.007677 -0.0056 1.2119
2. B(C 2,C 0) 1.4822 0.001398 0.0016 1.4838
3. B(C 3,C 2) 1.4145 0.002216 0.0038 1.4182
4. B(C 4,C 3) 1.3982 0.002769 -0.0043 1.3940
5. B(C 5,C 4) 1.4166 0.001847 0.0035 1.4201
6. B(O 6,C 5) 1.3661 0.000372 -0.0060 1.3600
7. B(C 7,C 5) 1.4084 -0.000006 0.0048 1.4132
8. B(C 8,C 7) 1.4023 0.003084 -0.0020 1.4003
9. B(C 8,C 2) 1.4122 0.002924 0.0043 1.4165
10. B(H 9,C 0) 1.1323 -0.000263 0.0100 1.1424
11. B(H 10,C 3) 1.1020 0.001108 0.0012 1.1031
12. B(H 11,C 4) 1.1035 0.001568 0.0026 1.1062
13. B(H 12,O 6) 0.9685 -0.005585 0.0040 0.9725
14. B(H 13,C 7) 1.1008 0.001148 0.0009 1.1017
15. B(H 14,C 8) 1.1060 0.002248 0.0005 1.1065
16. A(O 1,C 0,C 2) 124.08 -0.002349 2.01 126.10
17. A(O 1,C 0,H 9) 119.20 -0.004617 1.09 120.29
18. A(C 2,C 0,H 9) 116.72 0.006964 -3.10 113.62
19. A(C 3,C 2,C 8) 119.22 -0.000283 -0.10 119.12
20. A(C 0,C 2,C 8) 120.98 0.000912 -0.42 120.57
21. A(C 0,C 2,C 3) 119.79 -0.000630 0.52 120.32
22. A(C 4,C 3,H 10) 119.68 -0.003456 1.61 121.29
23. A(C 2,C 3,C 4) 120.14 -0.000741 0.16 120.30
24. A(C 2,C 3,H 10) 120.17 0.004198 -1.77 118.40
25. A(C 3,C 4,C 5) 120.00 -0.000142 0.37 120.37
26. A(C 5,C 4,H 11) 119.54 0.000949 -0.60 118.94
27. A(C 3,C 4,H 11) 120.45 -0.000807 0.23 120.68
28. A(O 6,C 5,C 7) 118.67 0.000972 -0.79 117.88
29. A(C 4,C 5,C 7) 120.42 0.001939 -0.81 119.62
30. A(C 4,C 5,O 6) 120.84 -0.002917 1.57 122.41
31. A(C 5,O 6,H 12) 111.12 0.005353 -3.12 108.00
32. A(C 5,C 7,C 8) 119.02 -0.001827 0.77 119.79
33. A(C 8,C 7,H 13) 121.78 0.000385 -0.21 121.57
34. A(C 5,C 7,H 13) 119.20 0.001442 -0.56 118.64
35. A(C 7,C 8,H 14) 118.93 -0.002256 0.89 119.82
36. A(C 2,C 8,C 7) 121.18 0.001055 -0.39 120.79
37. A(C 2,C 8,H 14) 119.88 0.001202 -0.50 119.39
38. D(C 3,C 2,C 0,H 9) 179.99 -0.000191 0.78 180.76
39. D(C 8,C 2,C 0,O 1) -179.84 0.000159 -0.63 -180.47
40. D(C 3,C 2,C 0,O 1) 0.29 0.000178 -0.67 -0.37
41. D(C 8,C 2,C 0,H 9) -0.15 -0.000210 0.81 0.66
42. D(C 4,C 3,C 2,C 8) -0.03 0.000043 -0.13 -0.16
43. D(H 10,C 3,C 2,C 0) 0.47 -0.000001 0.11 0.58
44. D(C 4,C 3,C 2,C 0) 179.83 0.000026 -0.09 179.74
45. D(H 10,C 3,C 2,C 8) -179.40 0.000016 0.07 -179.32
46. D(H 11,C 4,C 3,H 10) 0.59 0.000022 0.03 0.62
47. D(C 5,C 4,C 3,H 10) 179.96 0.000019 -0.01 179.95
48. D(H 11,C 4,C 3,C 2) -178.77 -0.000055 0.24 -178.53
49. D(C 5,C 4,C 3,C 2) 0.60 -0.000057 0.20 0.80
50. D(C 7,C 5,C 4,C 3) -0.60 -0.000004 -0.06 -0.66
51. D(O 6,C 5,C 4,C 3) -177.51 0.000102 -0.03 -177.54
52. D(O 6,C 5,C 4,H 11) 1.87 0.000088 -0.06 1.80
53. D(C 7,C 5,C 4,H 11) 178.77 -0.000018 -0.10 178.67
54. D(H 12,O 6,C 5,C 7) 131.49 -0.005051 17.19 148.68
55. D(H 12,O 6,C 5,C 4) -51.55 -0.005123 17.19 -34.36
56. D(H 13,C 7,C 5,O 6) -2.65 -0.000085 -0.21 -2.86
57. D(H 13,C 7,C 5,C 4) -179.62 0.000139 -0.28 -179.90
58. D(C 8,C 7,C 5,O 6) 177.01 -0.000163 -0.08 176.93
59. D(C 8,C 7,C 5,C 4) 0.04 0.000061 -0.14 -0.11
60. D(H 14,C 8,C 7,H 13) -0.41 -0.000051 0.09 -0.31
61. D(H 14,C 8,C 7,C 5) 179.94 0.000026 -0.04 179.90
62. D(C 2,C 8,C 7,H 13) -179.82 -0.000138 0.35 -179.47
63. D(C 2,C 8,C 7,C 5) 0.53 -0.000062 0.21 0.74
64. D(H 14,C 8,C 2,C 3) -179.94 -0.000059 0.18 -179.77
65. D(H 14,C 8,C 2,C 0) 0.19 -0.000040 0.14 0.33
66. D(C 7,C 8,C 2,C 3) -0.54 0.000009 -0.08 -0.62
67. D(C 7,C 8,C 2,C 0) 179.60 0.000029 -0.12 179.48
----------------------------------------------------------------------------
Geometry step timings:
Preparation and reading OPT file: 0.000 s ( 0.953 %)
Internal coordinates : 0.000 s ( 0.953 %)
B/P matrices and projection : 0.001 s (29.789 %)
Hessian update/contruction : 0.000 s ( 9.178 %)
Making the step : 0.001 s (40.973 %)
Converting the step to Cartesian: 0.000 s ( 2.909 %)
Storing new data : 0.000 s ( 1.354 %)
Checking convergence : 0.000 s ( 1.204 %)
Final printing : 0.000 s (12.638 %)
Total time : 0.002 s
Time for energy+gradient : 8.676 s
Time for complete geometry iter : 9.190 s
*************************************************************
* GEOMETRY OPTIMIZATION CYCLE 4 *
*************************************************************
---------------------------------
CARTESIAN COORDINATES (ANGSTROEM)
---------------------------------
C -2.632618 0.076005 -0.095525
O -3.361384 -0.891881 -0.067131
C -1.149486 0.054901 -0.056171
C -0.453090 -1.177588 0.029955
C 0.940361 -1.197299 0.061462
C 1.676681 0.016492 0.024695
O 3.036264 0.044216 0.004274
C 0.989118 1.248359 -0.058423
C -0.410298 1.262230 -0.106068
H -3.073257 1.126646 -0.178954
H -1.040134 -2.111179 0.056838
H 1.490533 -2.155999 0.104238
H 3.360026 -0.701509 0.537878
H 1.576478 2.180005 -0.087629
H -0.949195 2.226603 -0.169438
----------------------------
CARTESIAN COORDINATES (A.U.)
----------------------------
NO LB ZA FRAG MASS X Y Z
0 C 6.0000 0 12.011 -4.974927 0.143628 -0.180516
1 O 8.0000 0 15.999 -6.352094 -1.685411 -0.126859
2 C 6.0000 0 12.011 -2.172214 0.103747 -0.106148
3 C 6.0000 0 12.011 -0.856216 -2.225319 0.056606
4 C 6.0000 0 12.011 1.777025 -2.262567 0.116146
5 C 6.0000 0 12.011 3.168467 0.031165 0.046666
6 O 8.0000 0 15.999 5.737708 0.083557 0.008077
7 C 6.0000 0 12.011 1.869162 2.359057 -0.110404
8 C 6.0000 0 12.011 -0.775351 2.385268 -0.200439
9 H 1.0000 0 1.008 -5.807615 2.129053 -0.338175
10 H 1.0000 0 1.008 -1.965569 -3.989550 0.107408
11 H 1.0000 0 1.008 2.816699 -4.074247 0.196981
12 H 1.0000 0 1.008 6.349530 -1.325660 1.016442
13 H 1.0000 0 1.008 2.979111 4.119612 -0.165595
14 H 1.0000 0 1.008 -1.793718 4.207670 -0.320190
--------------------------------
INTERNAL COORDINATES (ANGSTROEM)
--------------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 1.211902359973 0.00000000 0.00000000
C 1 2 0 1.483804071774 126.09225113 0.00000000
C 3 1 2 1.418243402991 120.31646657 359.62640794
C 4 3 1 1.393946400795 120.29907381 179.74051110
C 5 4 3 1.420143224210 120.37302686 0.79603220
O 6 5 4 1.360019488479 122.42045920 182.44890332
C 6 5 4 1.413204843073 119.62301758 359.33635899
C 8 6 5 1.400295478547 119.79228932 359.89253243
H 1 2 3 1.142353311960 120.28411332 178.79478121
H 4 3 1 1.103147959656 118.40042902 0.56929050
H 5 4 3 1.106175328738 120.68488275 181.46709679
H 7 6 5 0.972450783038 107.99634623 325.62754481
H 8 6 5 1.101729298108 118.63921945 180.10020565
H 9 8 6 1.106544763494 119.82046323 179.89749547
---------------------------
INTERNAL COORDINATES (A.U.)
---------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 2.290163561401 0.00000000 0.00000000
C 1 2 0 2.803983332050 126.09225113 0.00000000
C 3 1 2 2.680091622894 120.31646657 359.62640794
C 4 3 1 2.634176942869 120.29907381 179.74051110
C 5 4 3 2.683681764701 120.37302686 0.79603220
O 6 5 4 2.570064370020 122.42045920 182.44890332
C 6 5 4 2.670570124539 119.62301758 359.33635899
C 8 6 5 2.646174961023 119.79228932 359.89253243
H 1 2 3 2.158734907782 120.28411332 178.79478121
H 4 3 1 2.084647528945 118.40042902 0.56929050
H 5 4 3 2.090368427416 120.68488275 181.46709679
H 7 6 5 1.837665658660 107.99634623 325.62754481
H 8 6 5 2.081966647142 118.63921945 180.10020565
H 9 8 6 2.091066557928 119.82046323 179.89749547
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
___
/ \ - P O W E R E D B Y -
/ \
| | | _ _ __ _____ __ __
| | | | | | | / \ | _ \ | | / |
\ \/ | | | | / \ | | | | | | / /
/ \ \ | |__| | / /\ \ | |_| | | |/ /
| | | | __ | / /__\ \ | / | \
| | | | | | | | __ | | \ | |\ \
\ / | | | | | | | | | |\ \ | | \ \
\___/ |_| |_| |__| |__| |_| \__\ |__| \__/
- O R C A' S B I G F R I E N D -
&
- I N T E G R A L F E E D E R -
v1 FN, 2020, v2 2021, v3 2022-2024
------------------------------------------------------------------------------
----------------------
SHARK INTEGRAL PACKAGE
----------------------
Number of atoms ... 15
Number of basis functions ... 156
Number of shells ... 72
Maximum angular momentum ... 2
Integral batch strategy ... SHARK/LIBINT Hybrid
RI-J (if used) integral strategy ... SPLIT-RIJ (Revised 2003 algorithm where possible)
Printlevel ... 1
Contraction scheme used ... SEGMENTED contraction
Prescreening option ... SCHWARTZ
Thresh ... 2.500e-11
Tcut ... 2.500e-12
Tpresel ... 2.500e-12
Coulomb Range Separation ... NOT USED
Exchange Range Separation ... NOT USED
Multipole approximations ... NOT USED
Finite Nucleus Model ... NOT USED
CABS basis ... NOT available
Auxiliary Coulomb fitting basis ... AVAILABLE
# of basis functions in Aux-J ... 507
# of shells in Aux-J ... 165
Maximum angular momentum in Aux-J ... 4
Auxiliary J/K fitting basis ... NOT available
Auxiliary Correlation fitting basis ... NOT available
Auxiliary 'external' fitting basis ... NOT available
Checking pre-screening integrals ... done ( 0.0 sec) Dimension = 72
=> SHARK Basis and OBASIS are compatible. Storing Pre-screening
Shell pair information
Shell pair cut-off parameter TPreSel ... 2.5e-12
Total number of shell pairs ... 2628
Shell pairs after pre-screening ... 2411
Total number of primitive shell pairs ... 9726
Primitive shell pairs kept ... 6515
la=0 lb=0: 714 shell pairs
la=1 lb=0: 865 shell pairs
la=1 lb=1: 279 shell pairs
la=2 lb=0: 314 shell pairs
la=2 lb=1: 198 shell pairs
la=2 lb=2: 41 shell pairs
Checking whether 4 symmetric matrices of dimension 156 fit in memory
:Max Core in MB = 4096.00
MB in use = 6.65
MB left = 4089.35
MB needed = 0.37
Data fit in memory = YES
Calculating RI/J V-Matrix + Cholesky decomp.... done ( 0.0 sec)
Calculating Nuclear repulsion ... done ( 0.0 sec) ENN= 394.904930050892 Eh
Diagonalization of the overlap matrix:
Smallest eigenvalue ... 2.894e-04
Time for diagonalization ... 0.005 sec
Threshold for overlap eigenvalues ... 1.000e-07
Number of eigenvalues below threshold ... 0
Time for construction of square roots ... 0.002 sec
Total time needed ... 0.008 sec
-------------------
DFT GRID GENERATION
-------------------
General Integration Accuracy IntAcc ... 4.388
Radial Grid Type RadialGrid ... OptM3 with GC (2021)
Angular Grid (max. ang.) AngularGrid ... 4 (Lebedev-302)
Angular grid pruning method GridPruning ... 4 (adaptive)
Weight generation scheme WeightScheme... mBecke (2022)
Basis function cutoff BFCut ... 1.0000e-11
Integration weight cutoff WCut ... 1.0000e-14
Partially contracted basis set ... off
Rotationally invariant grid construction ... off
Angular grids for H and He will be reduced by one unit
Total number of grid points ... 73622
Total number of batches ... 1159
Average number of points per batch ... 63
Average number of grid points per atom ... 4908
Grids setup in 0.4 sec
Initializing property integral containers ... done ( 0.0 sec)
SHARK setup successfully completed in 0.6 seconds
Maximum memory used throughout the entire STARTUP-calculation: 19.9 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
Occupation numbers will be reassigned to an Aufbau configuration
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
Finished Guess after 0.4 sec
Maximum memory used throughout the entire GUESS-calculation: 9.2 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
----------------------------------------D-I-I-S--------------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP DIISErr Damp Time(sec)
-------------------------------------------------------------------------------------------
*** Starting incremental Fock matrix formation ***
1 -419.9842015800561512 0.00e+00 2.16e-03 2.71e-02 5.10e-02 0.700 0.1
2 -419.9876325350087427 -3.43e-03 1.92e-03 2.37e-02 3.70e-02 0.700 0.1
***Turning on AO-DIIS***
3 -419.9901759888666675 -2.54e-03 1.42e-03 1.70e-02 2.68e-02 0.700 0.1
4 -419.9919409981730496 -1.77e-03 3.45e-03 4.02e-02 1.87e-02 0.000 0.1
*** Initializing SOSCF ***
---------------------------------------S-O-S-C-F--------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP MaxGrad Time(sec)
--------------------------------------------------------------------------------------
5 -419.9960575272573351 -4.12e-03 2.04e-04 1.53e-03 1.27e-03 0.1
*** Restarting incremental Fock matrix formation ***
6 -419.9960581108796305 -5.84e-07 4.53e-04 5.40e-03 6.00e-04 0.1
7 -419.9960219072406744 3.62e-05 3.56e-04 4.58e-03 1.92e-03 0.1
8 -419.9960632404529406 -4.13e-05 8.27e-05 5.93e-04 7.14e-05 0.1
9 -419.9960623751208004 8.65e-07 5.35e-05 2.89e-04 1.45e-04 0.1
10 -419.9960634887802371 -1.11e-06 1.96e-05 1.40e-04 2.31e-05 0.1
11 -419.9960634408683973 4.79e-08 1.32e-05 1.03e-04 4.62e-05 0.1
12 -419.9960635029019613 -6.20e-08 5.64e-06 4.27e-05 6.24e-06 0.1
13 -419.9960634985816341 4.32e-09 3.71e-06 2.86e-05 1.50e-05 0.1
**** Energy Check signals convergence ****
*****************************************************
* SUCCESS *
* SCF CONVERGED AFTER 13 CYCLES *
*****************************************************
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
----------------
TOTAL SCF ENERGY
----------------
Total Energy : -419.99606350208262 Eh -11428.67391 eV
Components:
Nuclear Repulsion : 394.90493005089206 Eh 10745.90946 eV
Electronic Energy : -814.90099355297468 Eh -22174.58337 eV
One Electron Energy: -1353.03901106900548 Eh -36818.06329 eV
Two Electron Energy: 538.13801751603080 Eh 14643.47992 eV
Virial components:
Potential Energy : -835.98729835832421 Eh -22748.37089 eV
Kinetic Energy : 415.99123485624159 Eh 11319.69698 eV
Virial Ratio : 2.00962719478266
DFT components:
N(Alpha) : 31.999994692749 electrons
N(Beta) : 31.999994692749 electrons
N(Total) : 63.999989385499 electrons
E(X) : -54.596663145491 Eh
E(C) : -2.143798092090 Eh
E(XC) : -56.740461237581 Eh
---------------
SCF CONVERGENCE
---------------
Last Energy change ... -4.3203e-09 Tolerance : 1.0000e-08
Last MAX-Density change ... 2.8593e-05 Tolerance : 1.0000e-07
Last RMS-Density change ... 3.7080e-06 Tolerance : 5.0000e-09
Last DIIS Error ... 1.2678e-03 Tolerance : 5.0000e-07
Last Orbital Gradient ... 1.4953e-05 Tolerance : 1.0000e-05
Last Orbital Rotation ... 3.5966e-05 Tolerance : 1.0000e-05
Total SCF time: 0 days 0 hours 0 min 1 sec
Finished LeanSCF after 1.9 sec
Maximum memory used throughout the entire LEANSCF-calculation: 9.2 MB
-------------------------------------------------------------------------------
DFT DISPERSION CORRECTION
DFTD4 V3.4.0
-------------------------------------------------------------------------------
------------------------- ----------------
Dispersion correction -0.015234210
------------------------- ----------------
------------------------- --------------------
FINAL SINGLE POINT ENERGY -420.011297712347
------------------------- --------------------
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
ORCA SCF GRADIENT CALCULATION
------------------------------------------------------------------------------
Nuc. rep. gradient (SHARK) ... done ( 0.0 sec)
HCore & Overlap gradient (SHARK) ... done ( 0.0 sec)
Split-RIJ-J gradient (SHARK) ... done ( 0.1 sec)
XC gradient ... done ( 0.3 sec)
Dispersion correction ... done ( 0.0 sec)
-------------------
DISPERSION GRADIENT
-------------------
1 C : -0.000380672 0.000028731 -0.000011129
2 O : -0.000335849 -0.000089916 -0.000004199
3 C : -0.000212697 0.000011365 -0.000006107
4 C : -0.000056393 -0.000273938 0.000012723
5 C : 0.000194277 -0.000263571 0.000016900
6 C : 0.000272814 -0.000000632 0.000007237
7 O : 0.000379746 -0.000015394 0.000016807
8 C : 0.000179415 0.000268489 -0.000010890
9 C : -0.000052297 0.000316315 -0.000018412
10 H : -0.000110807 0.000012122 -0.000003953
11 H : -0.000040583 -0.000113187 0.000004667
12 H : 0.000052484 -0.000109821 0.000004220
13 H : 0.000077891 -0.000000075 0.000004214
14 H : 0.000058519 0.000102376 -0.000004372
15 H : -0.000025848 0.000127136 -0.000007706
Difference to translation invariance:
: -0.0000000000 -0.0000000000 0.0000000000
Difference to rotation invariance:
: 0.0000000000 -0.0000000000 -0.0000000000
Norm of the Dispersion gradient ... 0.0010017137
RMS gradient ... 0.0001493267
MAX gradient ... 0.0003806717
------------------
CARTESIAN GRADIENT
------------------
1 C : -0.005844543 -0.016479489 0.002980453
2 O : 0.005319528 0.012575794 -0.001318397
3 C : -0.002125087 0.000792867 -0.000683434
4 C : 0.001745271 -0.003483716 0.000256839
5 C : -0.004372223 0.000005435 -0.002286953
6 C : 0.006137504 -0.000569514 0.003861566
7 O : 0.001916883 -0.004000169 -0.005605729
8 C : 0.001511242 0.000337204 0.001923794
9 C : 0.000485435 0.002637726 -0.000838602
10 H : -0.002624805 0.002508681 -0.000963912
11 H : -0.000464403 -0.001560515 -0.000037138
12 H : 0.001466974 -0.001832941 0.000004982
13 H : -0.002710535 0.005208783 0.002810006
14 H : 0.000552658 0.001350182 0.000014375
15 H : -0.000993899 0.002509672 -0.000117850
Difference to translation invariance:
: -0.0000000000 -0.0000000000 0.0000000000
Difference to rotation invariance:
: -0.0000782089 -0.0000136791 0.0000964982
Norm of the Cartesian gradient ... 0.0272045494
RMS gradient ... 0.0040554148
MAX gradient ... 0.0164794892
-------
TIMINGS
-------
Total SCF gradient time .... 0.535 sec
Densities .... 0.000 sec ( 0.1%)
One electron gradient .... 0.022 sec ( 4.2%)
RI-J Coulomb gradient .... 0.139 sec ( 26.0%)
XC gradient .... 0.337 sec ( 63.0%)
Maximum memory used throughout the entire SCFGRAD-calculation: 29.0 MB
------------------------------------------------------------------------------
ORCA GEOMETRY RELAXATION STEP
------------------------------------------------------------------------------
Reading the OPT-File .... done
Getting information on internals .... done
Copying old internal coords+grads .... done
Making the new internal coordinates .... (2022 redundants) done
Validating the new internal coordinates .... (2022 redundants) done
Calculating the B-matrix .... done
Calculating the G,G- and P matrices .... done
Transforming gradient to internals .... done
Projecting the internal gradient .... done
Number of atoms .... 15
Number of internal coordinates .... 67
Current Energy .... -420.011297712 Eh
Current gradient norm .... 0.027204549 Eh/bohr
Maximum allowed component of the step .... 0.300
Current trust radius .... 0.450
Updating the Hessian (BFGS) .... done
Forming the augmented Hessian .... done
Diagonalizing the augmented Hessian .... done
Last element of RFO vector .... 0.870143977
Lowest eigenvalues of augmented Hessian:
-0.003824585 0.009766870 0.016052442 0.017430351 0.025728301
Length of the computed step .... 0.566340282
Warning: the length of the step is outside the trust region - taking restricted step instead
The input lambda is .... 0.005479
iter: 5 x= -0.000486 g= 586.842789 f(x)= 1.228279
iter: 10 x= -0.006500 g= 31.089149 f(x)= 0.000132
The output lambda is .... -0.006500 (12 iterations)
The final length of the internal step .... 0.437272513
Converting the step to Cartesian space:
Initial RMS(Int)= 0.0534213399
Transforming coordinates:
Iter 0: RMS(Cart)= 0.0637527133 RMS(Int)= 1.3242550379
Iter 5: RMS(Cart)= 0.0000681824 RMS(Int)= 0.0000534339
Iter 10: RMS(Cart)= 0.0000001409 RMS(Int)= 0.0000001190
done
Storing new coordinates .... done
The predicted energy change is .... 0.041002401
Previously predicted energy change .... -0.002571950
Actually observed energy change .... -0.003294845
Ratio of predicted to observed change .... 1.281068929
New trust radius .... 0.450000000
.--------------------.
----------------------|Geometry convergence|-------------------------
Item value Tolerance Converged
---------------------------------------------------------------------
Energy change -0.0032948449 0.0000050000 NO
RMS gradient 0.0024875318 0.0001000000 NO
MAX gradient 0.0132746189 0.0003000000 NO
RMS step 0.0534213399 0.0020000000 NO
MAX step 0.3000000000 0.0040000000 NO
-------------------------------------------------------------------------
........................................................
Max(Bonds) 0.0040 Max(Angles) 1.71
Max(Dihed) 17.19 Max(Improp) 0.00
---------------------------------------------------------------------
The optimization has not yet converged - more geometry cycles are needed
---------------------------------------------------------------------------
Redundant Internal Coordinates
(Angstroem and degrees)
Definition Value dE/dq Step New-Value
----------------------------------------------------------------------------
1. B(O 1,C 0) 1.2119 -0.013275 0.0038 1.2157
2. B(C 2,C 0) 1.4838 0.003110 -0.0022 1.4816
3. B(C 3,C 2) 1.4182 0.004779 -0.0011 1.4171
4. B(C 4,C 3) 1.3939 0.001050 -0.0030 1.3909
5. B(C 5,C 4) 1.4201 0.004319 -0.0010 1.4192
6. B(O 6,C 5) 1.3600 -0.000727 -0.0037 1.3563
7. B(C 7,C 5) 1.4132 0.002407 0.0012 1.4144
8. B(C 8,C 7) 1.4003 0.003463 -0.0039 1.3964
9. B(C 8,C 2) 1.4165 0.005593 -0.0011 1.4154
10. B(H 9,C 0) 1.1424 0.003392 0.0015 1.1438
11. B(H 10,C 3) 1.1031 0.001567 -0.0009 1.1022
12. B(H 11,C 4) 1.1062 0.002319 -0.0005 1.1056
13. B(H 12,O 6) 0.9725 -0.003354 0.0040 0.9764
14. B(H 13,C 7) 1.1017 0.001436 -0.0008 1.1009
15. B(H 14,C 8) 1.1065 0.002678 -0.0024 1.1042
16. A(O 1,C 0,C 2) 126.09 0.004085 0.63 126.72
17. A(O 1,C 0,H 9) 120.28 -0.003616 1.07 121.36
18. A(C 2,C 0,H 9) 113.61 -0.000492 -1.71 111.91
19. A(C 3,C 2,C 8) 119.12 -0.000628 -0.02 119.10
20. A(C 0,C 2,C 8) 120.57 0.000094 -0.26 120.30
21. A(C 0,C 2,C 3) 120.32 0.000534 0.28 120.60
22. A(C 4,C 3,H 10) 121.30 -0.000206 0.98 122.27
23. A(C 2,C 3,C 4) 120.30 -0.000487 0.16 120.46
24. A(C 2,C 3,H 10) 118.40 0.000692 -1.13 117.27
25. A(C 3,C 4,C 5) 120.37 0.001644 -0.00 120.37
26. A(C 5,C 4,H 11) 118.94 -0.001196 -0.16 118.78
27. A(C 3,C 4,H 11) 120.68 -0.000449 0.16 120.85
28. A(O 6,C 5,C 7) 117.89 -0.000750 -0.42 117.47
29. A(C 4,C 5,C 7) 119.62 -0.000881 -0.29 119.33
30. A(C 4,C 5,O 6) 122.42 0.001605 0.72 123.14
31. A(C 5,O 6,H 12) 108.00 -0.003111 -1.26 106.74
32. A(C 5,C 7,C 8) 119.79 0.000557 0.35 120.14
33. A(C 8,C 7,H 13) 121.57 -0.000537 -0.03 121.54
34. A(C 5,C 7,H 13) 118.64 -0.000020 -0.31 118.33
35. A(C 7,C 8,H 14) 119.82 -0.000272 0.55 120.37
36. A(C 2,C 8,C 7) 120.79 -0.000207 -0.20 120.59
37. A(C 2,C 8,H 14) 119.39 0.000478 -0.36 119.03
38. D(C 3,C 2,C 0,H 9) -179.24 0.000693 -2.31 -181.55
39. D(C 8,C 2,C 0,O 1) 179.53 -0.000759 2.57 182.10
40. D(C 3,C 2,C 0,O 1) -0.37 -0.000738 2.53 2.16
41. D(C 8,C 2,C 0,H 9) 0.66 0.000671 -2.27 -1.61
42. D(C 4,C 3,C 2,C 8) -0.16 0.000049 -0.12 -0.28
43. D(H 10,C 3,C 2,C 0) 0.57 0.000130 -0.19 0.38
44. D(C 4,C 3,C 2,C 0) 179.74 0.000029 -0.09 179.66
45. D(H 10,C 3,C 2,C 8) -179.33 0.000150 -0.23 -179.56
46. D(H 11,C 4,C 3,H 10) 0.61 0.000100 -0.12 0.49
47. D(C 5,C 4,C 3,H 10) 179.94 -0.000007 0.00 179.95
48. D(H 11,C 4,C 3,C 2) -178.53 0.000196 -0.19 -178.72
49. D(C 5,C 4,C 3,C 2) 0.80 0.000090 -0.06 0.73
50. D(C 7,C 5,C 4,C 3) -0.66 -0.000132 0.19 -0.47
51. D(O 6,C 5,C 4,C 3) -177.55 0.000483 -0.66 -178.21
52. D(O 6,C 5,C 4,H 11) 1.79 0.000383 -0.53 1.26
53. D(C 7,C 5,C 4,H 11) 178.68 -0.000233 0.33 179.00
54. D(H 12,O 6,C 5,C 7) 148.69 -0.004338 17.19 165.88
55. D(H 12,O 6,C 5,C 4) -34.37 -0.004949 17.19 -17.18
56. D(H 13,C 7,C 5,O 6) -2.87 -0.000383 0.56 -2.32
57. D(H 13,C 7,C 5,C 4) -179.90 0.000131 -0.37 -180.27
58. D(C 8,C 7,C 5,O 6) 176.92 -0.000490 0.79 177.71
59. D(C 8,C 7,C 5,C 4) -0.11 0.000024 -0.13 -0.24
60. D(H 14,C 8,C 7,H 13) -0.32 -0.000110 0.23 -0.08
61. D(H 14,C 8,C 7,C 5) 179.90 -0.000001 -0.01 179.89
62. D(C 2,C 8,C 7,H 13) -179.47 -0.000012 0.17 -179.30
63. D(C 2,C 8,C 7,C 5) 0.75 0.000097 -0.07 0.68
64. D(H 14,C 8,C 2,C 3) -179.77 -0.000030 0.12 -179.65
65. D(H 14,C 8,C 2,C 0) 0.33 -0.000010 0.08 0.41
66. D(C 7,C 8,C 2,C 3) -0.61 -0.000134 0.20 -0.42
67. D(C 7,C 8,C 2,C 0) 179.48 -0.000114 0.16 179.64
----------------------------------------------------------------------------
Geometry step timings:
Preparation and reading OPT file: 0.000 s ( 0.867 %)
Internal coordinates : 0.000 s ( 1.020 %)
B/P matrices and projection : 0.000 s (25.204 %)
Hessian update/contruction : 0.000 s ( 9.337 %)
Making the step : 0.001 s (44.694 %)
Converting the step to Cartesian: 0.000 s ( 3.469 %)
Storing new data : 0.000 s ( 1.173 %)
Checking convergence : 0.000 s ( 1.582 %)
Final printing : 0.000 s (12.551 %)
Total time : 0.002 s
Time for energy+gradient : 4.935 s
Time for complete geometry iter : 5.485 s
*************************************************************
* GEOMETRY OPTIMIZATION CYCLE 5 *
*************************************************************
---------------------------------
CARTESIAN COORDINATES (ANGSTROEM)
---------------------------------
C -2.626678 0.066981 -0.130750
O -3.367024 -0.895196 -0.066500
C -1.146584 0.050952 -0.065983
C -0.442430 -1.174298 0.039743
C 0.947428 -1.186427 0.093088
C 1.677520 0.030059 0.058314
O 3.032808 0.082284 0.070387
C 0.978077 1.255224 -0.042736
C -0.416618 1.262814 -0.110707
H -3.039399 1.132345 -0.185483
H -1.040421 -2.099859 0.064192
H 1.504106 -2.139722 0.154430
H 3.345154 -0.791330 0.374757
H 1.560735 2.189021 -0.065204
H -0.966675 2.217155 -0.187550
----------------------------
CARTESIAN COORDINATES (A.U.)
----------------------------
NO LB ZA FRAG MASS X Y Z
0 C 6.0000 0 12.011 -4.963702 0.126576 -0.247081
1 O 8.0000 0 15.999 -6.362753 -1.691676 -0.125667
2 C 6.0000 0 12.011 -2.166731 0.096285 -0.124689
3 C 6.0000 0 12.011 -0.836071 -2.219102 0.075103
4 C 6.0000 0 12.011 1.790380 -2.242023 0.175911
5 C 6.0000 0 12.011 3.170054 0.056804 0.110198
6 O 8.0000 0 15.999 5.731176 0.155494 0.133013
7 C 6.0000 0 12.011 1.848298 2.372029 -0.080760
8 C 6.0000 0 12.011 -0.787293 2.386373 -0.209206
9 H 1.0000 0 1.008 -5.743633 2.139822 -0.350512
10 H 1.0000 0 1.008 -1.966110 -3.968159 0.121305
11 H 1.0000 0 1.008 2.842348 -4.043488 0.291831
12 H 1.0000 0 1.008 6.321425 -1.495398 0.708188
13 H 1.0000 0 1.008 2.949361 4.136650 -0.123218
14 H 1.0000 0 1.008 -1.826752 4.189815 -0.354417
--------------------------------
INTERNAL COORDINATES (ANGSTROEM)
--------------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 1.215740574360 0.00000000 0.00000000
C 1 2 0 1.481596787923 126.68938009 0.00000000
C 3 1 2 1.417127148876 120.59725973 2.16639681
C 4 3 1 1.390934362901 120.45789164 179.65245689
C 5 4 3 1.419183830632 120.37335875 0.75340237
O 6 5 4 1.356346990647 123.14977323 181.84602260
C 6 5 4 1.414376188213 119.33059068 359.46193985
C 8 6 5 1.396370765228 120.14016147 359.84104891
H 1 2 3 1.143824676803 121.32839636 184.02647457
H 4 3 1 1.102204241885 117.26517864 0.39223821
H 5 4 3 1.105632241671 120.84712059 181.27920285
H 7 6 5 0.976423434839 106.73604864 343.17548136
H 8 6 5 1.100896101373 118.32491702 179.81115820
H 9 8 6 1.104189292561 120.37406297 179.87261286
---------------------------
INTERNAL COORDINATES (A.U.)
---------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 2.297416735436 0.00000000 0.00000000
C 1 2 0 2.799812170073 126.68938009 0.00000000
C 3 1 2 2.677982208320 120.59725973 2.16639681
C 4 3 1 2.628485016143 120.45789164 179.65245689
C 5 4 3 2.681868773584 120.37335875 0.75340237
O 6 5 4 2.563124354890 123.14977323 181.84602260
C 6 5 4 2.672783646062 119.33059068 359.46193985
C 8 6 5 2.638758327694 120.14016147 359.84104891
H 1 2 3 2.161515384378 121.32839636 184.02647457
H 4 3 1 2.082864160809 117.26517864 0.39223821
H 5 4 3 2.089342141591 120.84712059 181.27920285
H 7 6 5 1.845172882588 106.73604864 343.17548136
H 8 6 5 2.080392133496 118.32491702 179.81115820
H 9 8 6 2.086615362949 120.37406297 179.87261286
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
___
/ \ - P O W E R E D B Y -
/ \
| | | _ _ __ _____ __ __
| | | | | | | / \ | _ \ | | / |
\ \/ | | | | / \ | | | | | | / /
/ \ \ | |__| | / /\ \ | |_| | | |/ /
| | | | __ | / /__\ \ | / | \
| | | | | | | | __ | | \ | |\ \
\ / | | | | | | | | | |\ \ | | \ \
\___/ |_| |_| |__| |__| |_| \__\ |__| \__/
- O R C A' S B I G F R I E N D -
&
- I N T E G R A L F E E D E R -
v1 FN, 2020, v2 2021, v3 2022-2024
------------------------------------------------------------------------------
----------------------
SHARK INTEGRAL PACKAGE
----------------------
Number of atoms ... 15
Number of basis functions ... 156
Number of shells ... 72
Maximum angular momentum ... 2
Integral batch strategy ... SHARK/LIBINT Hybrid
RI-J (if used) integral strategy ... SPLIT-RIJ (Revised 2003 algorithm where possible)
Printlevel ... 1
Contraction scheme used ... SEGMENTED contraction
Prescreening option ... SCHWARTZ
Thresh ... 2.500e-11
Tcut ... 2.500e-12
Tpresel ... 2.500e-12
Coulomb Range Separation ... NOT USED
Exchange Range Separation ... NOT USED
Multipole approximations ... NOT USED
Finite Nucleus Model ... NOT USED
CABS basis ... NOT available
Auxiliary Coulomb fitting basis ... AVAILABLE
# of basis functions in Aux-J ... 507
# of shells in Aux-J ... 165
Maximum angular momentum in Aux-J ... 4
Auxiliary J/K fitting basis ... NOT available
Auxiliary Correlation fitting basis ... NOT available
Auxiliary 'external' fitting basis ... NOT available
Checking pre-screening integrals ... done ( 0.0 sec) Dimension = 72
=> SHARK Basis and OBASIS are compatible. Storing Pre-screening
Shell pair information
Shell pair cut-off parameter TPreSel ... 2.5e-12
Total number of shell pairs ... 2628
Shell pairs after pre-screening ... 2412
Total number of primitive shell pairs ... 9726
Primitive shell pairs kept ... 6516
la=0 lb=0: 714 shell pairs
la=1 lb=0: 865 shell pairs
la=1 lb=1: 280 shell pairs
la=2 lb=0: 314 shell pairs
la=2 lb=1: 198 shell pairs
la=2 lb=2: 41 shell pairs
Checking whether 4 symmetric matrices of dimension 156 fit in memory
:Max Core in MB = 4096.00
MB in use = 6.65
MB left = 4089.35
MB needed = 0.37
Data fit in memory = YES
Calculating RI/J V-Matrix + Cholesky decomp.... done ( 0.0 sec)
Calculating Nuclear repulsion ... done ( 0.0 sec) ENN= 395.183456517414 Eh
Diagonalization of the overlap matrix:
Smallest eigenvalue ... 2.858e-04
Time for diagonalization ... 0.003 sec
Threshold for overlap eigenvalues ... 1.000e-07
Number of eigenvalues below threshold ... 0
Time for construction of square roots ... 0.001 sec
Total time needed ... 0.006 sec
-------------------
DFT GRID GENERATION
-------------------
General Integration Accuracy IntAcc ... 4.388
Radial Grid Type RadialGrid ... OptM3 with GC (2021)
Angular Grid (max. ang.) AngularGrid ... 4 (Lebedev-302)
Angular grid pruning method GridPruning ... 4 (adaptive)
Weight generation scheme WeightScheme... mBecke (2022)
Basis function cutoff BFCut ... 1.0000e-11
Integration weight cutoff WCut ... 1.0000e-14
Partially contracted basis set ... off
Rotationally invariant grid construction ... off
Angular grids for H and He will be reduced by one unit
Total number of grid points ... 73598
Total number of batches ... 1158
Average number of points per batch ... 63
Average number of grid points per atom ... 4907
Grids setup in 0.5 sec
Initializing property integral containers ... done ( 0.0 sec)
SHARK setup successfully completed in 0.6 seconds
Maximum memory used throughout the entire STARTUP-calculation: 19.9 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
Occupation numbers will be reassigned to an Aufbau configuration
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
Finished Guess after 0.5 sec
Maximum memory used throughout the entire GUESS-calculation: 9.2 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
----------------------------------------D-I-I-S--------------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP DIISErr Damp Time(sec)
-------------------------------------------------------------------------------------------
*** Starting incremental Fock matrix formation ***
1 -419.9863121686989871 0.00e+00 2.06e-03 3.23e-02 6.51e-02 0.700 0.1
2 -419.9896881012373342 -3.38e-03 1.80e-03 2.88e-02 4.71e-02 0.700 0.1
***Turning on AO-DIIS***
3 -419.9921946723122801 -2.51e-03 1.34e-03 2.10e-02 3.36e-02 0.700 0.1
4 -419.9939374010505162 -1.74e-03 3.22e-03 5.00e-02 2.36e-02 0.000 0.1
*** Initializing SOSCF ***
---------------------------------------S-O-S-C-F--------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP MaxGrad Time(sec)
--------------------------------------------------------------------------------------
5 -419.9979956909332941 -4.06e-03 1.34e-04 1.09e-03 7.34e-04 0.1
*** Restarting incremental Fock matrix formation ***
6 -419.9979977693567434 -2.08e-06 1.64e-04 1.38e-03 1.79e-04 0.1
7 -419.9979944024998986 3.37e-06 1.10e-04 9.95e-04 4.21e-04 0.1
8 -419.9979992525460375 -4.85e-06 6.63e-05 7.69e-04 6.42e-05 0.1
9 -419.9979985944872851 6.58e-07 4.81e-05 5.58e-04 1.71e-04 0.1
10 -419.9979993613840179 -7.67e-07 1.36e-05 1.17e-04 1.40e-05 0.1
11 -419.9979993412824797 2.01e-08 8.44e-06 8.86e-05 2.84e-05 0.1
12 -419.9979993717555544 -3.05e-08 2.95e-06 1.50e-05 3.88e-06 0.1
13 -419.9979993717913658 -3.58e-11 1.80e-06 1.20e-05 8.35e-06 0.1
**** Energy Check signals convergence ****
*****************************************************
* SUCCESS *
* SCF CONVERGED AFTER 13 CYCLES *
*****************************************************
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
----------------
TOTAL SCF ENERGY
----------------
Total Energy : -419.99799937244268 Eh -11428.72659 eV
Components:
Nuclear Repulsion : 395.18345651741402 Eh 10753.48855 eV
Electronic Energy : -815.18145588985669 Eh -22182.21514 eV
One Electron Energy: -1353.53942043061443 Eh -36831.68012 eV
Two Electron Energy: 538.35796454075773 Eh 14649.46498 eV
Virial components:
Potential Energy : -836.00103742754231 Eh -22748.74475 eV
Kinetic Energy : 416.00303805509958 Eh 11320.01816 eV
Virial Ratio : 2.00960320226511
DFT components:
N(Alpha) : 31.999991847654 electrons
N(Beta) : 31.999991847654 electrons
N(Total) : 63.999983695307 electrons
E(X) : -54.598384461413 Eh
E(C) : -2.144259419788 Eh
E(XC) : -56.742643881201 Eh
---------------
SCF CONVERGENCE
---------------
Last Energy change ... 3.5811e-11 Tolerance : 1.0000e-08
Last MAX-Density change ... 1.2035e-05 Tolerance : 1.0000e-07
Last RMS-Density change ... 1.8048e-06 Tolerance : 5.0000e-09
Last DIIS Error ... 7.3376e-04 Tolerance : 5.0000e-07
Last Orbital Gradient ... 8.3450e-06 Tolerance : 1.0000e-05
Last Orbital Rotation ... 1.9147e-05 Tolerance : 1.0000e-05
Total SCF time: 0 days 0 hours 0 min 1 sec
Finished LeanSCF after 1.9 sec
Maximum memory used throughout the entire LEANSCF-calculation: 9.2 MB
-------------------------------------------------------------------------------
DFT DISPERSION CORRECTION
DFTD4 V3.4.0
-------------------------------------------------------------------------------
------------------------- ----------------
Dispersion correction -0.015254349
------------------------- ----------------
------------------------- --------------------
FINAL SINGLE POINT ENERGY -420.013253721810
------------------------- --------------------
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
ORCA SCF GRADIENT CALCULATION
------------------------------------------------------------------------------
Nuc. rep. gradient (SHARK) ... done ( 0.0 sec)
HCore & Overlap gradient (SHARK) ... done ( 0.0 sec)
Split-RIJ-J gradient (SHARK) ... done ( 0.1 sec)
XC gradient ... done ( 0.3 sec)
Dispersion correction ... done ( 0.0 sec)
-------------------
DISPERSION GRADIENT
-------------------
1 C : -0.000379972 0.000026815 -0.000018138
2 O : -0.000336306 -0.000091101 -0.000004245
3 C : -0.000212073 0.000010351 -0.000010142
4 C : -0.000053901 -0.000274110 0.000012972
5 C : 0.000196610 -0.000262342 0.000022358
6 C : 0.000273162 0.000000713 0.000011523
7 O : 0.000379565 -0.000014580 0.000018421
8 C : 0.000178598 0.000268477 -0.000008593
9 C : -0.000055692 0.000314804 -0.000022231
10 H : -0.000111313 0.000012812 -0.000004615
11 H : -0.000041151 -0.000112920 0.000004739
12 H : 0.000052762 -0.000109879 0.000006894
13 H : 0.000077974 0.000001954 0.000003556
14 H : 0.000058759 0.000102319 -0.000003369
15 H : -0.000027023 0.000126688 -0.000009129
Difference to translation invariance:
: 0.0000000000 0.0000000000 0.0000000000
Difference to rotation invariance:
: 0.0000000000 -0.0000000000 -0.0000000000
Norm of the Dispersion gradient ... 0.0010015892
RMS gradient ... 0.0001493081
MAX gradient ... 0.0003799717
------------------
CARTESIAN GRADIENT
------------------
1 C : -0.004032716 -0.014709732 -0.006320686
2 O : 0.001443579 0.006947726 0.002066640
3 C : -0.002022697 0.002728117 0.001782901
4 C : 0.005432028 -0.003961011 0.000934353
5 C : -0.007093283 0.000816626 -0.001846939
6 C : 0.007412015 -0.004114214 0.004377211
7 O : 0.002934544 0.003910655 -0.005707930
8 C : -0.001015588 -0.001204819 0.000534170
9 C : 0.001163926 0.004114545 -0.000941317
10 H : 0.000355233 0.004382107 0.002237099
11 H : -0.001719216 0.000183780 -0.000210076
12 H : 0.001489911 -0.000720390 -0.000153311
13 H : -0.003620248 0.000224620 0.002911636
14 H : 0.000344475 0.000646137 0.000229176
15 H : -0.001071962 0.000755854 0.000107074
Difference to translation invariance:
: -0.0000000000 -0.0000000000 -0.0000000000
Difference to rotation invariance:
: -0.0000504310 -0.0000305440 0.0000887014
Norm of the Cartesian gradient ... 0.0258054995
RMS gradient ... 0.0038468567
MAX gradient ... 0.0147097317
-------
TIMINGS
-------
Total SCF gradient time .... 0.546 sec
Densities .... 0.000 sec ( 0.1%)
One electron gradient .... 0.019 sec ( 3.5%)
RI-J Coulomb gradient .... 0.141 sec ( 25.8%)
XC gradient .... 0.347 sec ( 63.5%)
Maximum memory used throughout the entire SCFGRAD-calculation: 29.0 MB
------------------------------------------------------------------------------
ORCA GEOMETRY RELAXATION STEP
------------------------------------------------------------------------------
Reading the OPT-File .... done
Getting information on internals .... done
Copying old internal coords+grads .... done
Making the new internal coordinates .... (2022 redundants) done
Validating the new internal coordinates .... (2022 redundants) done
Calculating the B-matrix .... done
Calculating the G,G- and P matrices .... done
Transforming gradient to internals .... done
Projecting the internal gradient .... done
Number of atoms .... 15
Number of internal coordinates .... 67
Current Energy .... -420.013253722 Eh
Current gradient norm .... 0.025805500 Eh/bohr
Maximum allowed component of the step .... 0.300
Current trust radius .... 0.450
Updating the Hessian (BFGS) .... done
Forming the augmented Hessian .... done
Diagonalizing the augmented Hessian .... done
Last element of RFO vector .... 0.897891082
Lowest eigenvalues of augmented Hessian:
-0.002987417 0.007262408 0.016052365 0.025725583 0.026445618
Length of the computed step .... 0.490279597
Warning: the length of the step is outside the trust region - taking restricted step instead
The input lambda is .... 0.004385
iter: 5 x= -0.001049 g= 308.905511 f(x)= 0.536215
iter: 10 x= -0.003773 g= 42.136172 f(x)= 0.000000
The output lambda is .... -0.003773 (11 iterations)
The final length of the internal step .... 0.450000000
Converting the step to Cartesian space:
Initial RMS(Int)= 0.0549762500
Transforming coordinates:
Iter 0: RMS(Cart)= 0.0708904632 RMS(Int)= 1.5079529576
Iter 5: RMS(Cart)= 0.0000456698 RMS(Int)= 0.0000361309
Iter 10: RMS(Cart)= 0.0000000674 RMS(Int)= 0.0000000576
done
Storing new coordinates .... done
The predicted energy change is .... -0.001789074
Previously predicted energy change .... 0.041002401
Actually observed energy change .... -0.001956009
Ratio of predicted to observed change .... 0.047704754
New trust radius .... 0.300000000
.--------------------.
----------------------|Geometry convergence|-------------------------
Item value Tolerance Converged
---------------------------------------------------------------------
Energy change -0.0019560095 0.0000050000 NO
RMS gradient 0.0020762907 0.0001000000 NO
MAX gradient 0.0066543894 0.0003000000 NO
RMS step 0.0549762500 0.0020000000 NO
MAX step 0.2948487777 0.0040000000 NO
-------------------------------------------------------------------------
........................................................
Max(Bonds) 0.0074 Max(Angles) 0.77
Max(Dihed) 16.89 Max(Improp) 0.00
---------------------------------------------------------------------
The optimization has not yet converged - more geometry cycles are needed
---------------------------------------------------------------------------
Redundant Internal Coordinates
(Angstroem and degrees)
Definition Value dE/dq Step New-Value
----------------------------------------------------------------------------
1. B(O 1,C 0) 1.2157 -0.006270 0.0074 1.2232
2. B(C 2,C 0) 1.4816 0.002283 -0.0045 1.4771
3. B(C 3,C 2) 1.4171 0.003568 -0.0042 1.4129
4. B(C 4,C 3) 1.3909 -0.000974 -0.0011 1.3898
5. B(C 5,C 4) 1.4192 0.003362 -0.0039 1.4153
6. B(O 6,C 5) 1.3563 -0.000551 -0.0021 1.3543
7. B(C 7,C 5) 1.4144 0.002022 -0.0011 1.4132
8. B(C 8,C 7) 1.3964 0.001441 -0.0043 1.3921
9. B(C 8,C 2) 1.4154 0.003476 -0.0041 1.4114
10. B(H 9,C 0) 1.1438 0.003848 -0.0052 1.1386
11. B(H 10,C 3) 1.1022 0.000774 -0.0019 1.1003
12. B(H 11,C 4) 1.1056 0.001363 -0.0024 1.1032
13. B(H 12,O 6) 0.9764 -0.000450 0.0031 0.9795
14. B(H 13,C 7) 1.1009 0.000726 -0.0017 1.0992
15. B(H 14,C 8) 1.1042 0.001180 -0.0034 1.1007
16. A(O 1,C 0,C 2) 126.69 0.005713 -0.54 126.15
17. A(O 1,C 0,H 9) 121.33 -0.000848 0.77 122.10
18. A(C 2,C 0,H 9) 111.88 -0.005131 -0.33 111.54
19. A(C 3,C 2,C 8) 119.10 -0.000452 0.04 119.14
20. A(C 0,C 2,C 8) 120.30 -0.000651 -0.08 120.22
21. A(C 0,C 2,C 3) 120.60 0.001102 0.04 120.64
22. A(C 4,C 3,H 10) 122.27 0.001659 0.38 122.65
23. A(C 2,C 3,C 4) 120.46 -0.000077 0.13 120.59
24. A(C 2,C 3,H 10) 117.27 -0.001585 -0.50 116.76
25. A(C 3,C 4,C 5) 120.37 0.001727 -0.26 120.11
26. A(C 5,C 4,H 11) 118.78 -0.001824 0.20 118.98
27. A(C 3,C 4,H 11) 120.85 0.000096 0.07 120.91
28. A(O 6,C 5,C 7) 117.48 -0.001442 -0.07 117.41
29. A(C 4,C 5,C 7) 119.33 -0.002121 0.15 119.48
30. A(C 4,C 5,O 6) 123.15 0.003537 -0.04 123.11
31. A(C 5,O 6,H 12) 106.74 -0.006654 0.37 107.11
32. A(C 5,C 7,C 8) 120.14 0.001791 -0.04 120.10
33. A(C 8,C 7,H 13) 121.53 -0.000928 0.13 121.66
34. A(C 5,C 7,H 13) 118.32 -0.000863 -0.08 118.24
35. A(C 7,C 8,H 14) 120.37 0.001007 0.22 120.59
36. A(C 2,C 8,C 7) 120.59 -0.000871 -0.01 120.58
37. A(C 2,C 8,H 14) 119.03 -0.000138 -0.21 118.82
38. D(C 3,C 2,C 0,H 9) 178.46 -0.002306 5.61 184.07
39. D(C 8,C 2,C 0,O 1) -177.91 0.002398 -5.74 -183.65
40. D(C 3,C 2,C 0,O 1) 2.17 0.002495 -5.93 -3.77
41. D(C 8,C 2,C 0,H 9) -1.62 -0.002403 5.80 4.18
42. D(C 4,C 3,C 2,C 8) -0.27 -0.000103 0.14 -0.13
43. D(H 10,C 3,C 2,C 0) 0.39 0.000082 -0.28 0.12
44. D(C 4,C 3,C 2,C 0) 179.65 -0.000199 0.33 179.98
45. D(H 10,C 3,C 2,C 8) -179.53 0.000178 -0.46 -180.00
46. D(H 11,C 4,C 3,H 10) 0.50 0.000086 -0.21 0.29
47. D(C 5,C 4,C 3,H 10) 179.98 -0.000061 0.09 180.07
48. D(H 11,C 4,C 3,C 2) -178.72 0.000407 -0.78 -179.50
49. D(C 5,C 4,C 3,C 2) 0.75 0.000259 -0.48 0.28
50. D(C 7,C 5,C 4,C 3) -0.54 -0.000229 0.47 -0.07
51. D(O 6,C 5,C 4,C 3) -178.15 0.000572 -1.17 -179.32
52. D(O 6,C 5,C 4,H 11) 1.33 0.000437 -0.87 0.46
53. D(C 7,C 5,C 4,H 11) 178.95 -0.000364 0.78 179.72
54. D(H 12,O 6,C 5,C 7) 165.52 -0.002161 15.27 180.79
55. D(H 12,O 6,C 5,C 4) -16.82 -0.002966 16.89 0.07
56. D(H 13,C 7,C 5,O 6) -2.44 -0.000560 1.30 -1.14
57. D(H 13,C 7,C 5,C 4) 179.81 0.000076 -0.34 179.47
58. D(C 8,C 7,C 5,O 6) 177.59 -0.000596 1.52 179.11
59. D(C 8,C 7,C 5,C 4) -0.16 0.000040 -0.12 -0.28
60. D(H 14,C 8,C 7,H 13) -0.10 -0.000084 0.27 0.18
61. D(H 14,C 8,C 7,C 5) 179.87 -0.000047 0.05 179.92
62. D(C 2,C 8,C 7,H 13) -179.33 0.000055 0.01 -179.32
63. D(C 2,C 8,C 7,C 5) 0.64 0.000092 -0.22 0.42
64. D(H 14,C 8,C 2,C 3) -179.67 0.000068 -0.06 -179.73
65. D(H 14,C 8,C 2,C 0) 0.40 0.000163 -0.26 0.15
66. D(C 7,C 8,C 2,C 3) -0.43 -0.000061 0.21 -0.22
67. D(C 7,C 8,C 2,C 0) 179.65 0.000034 0.02 179.66
----------------------------------------------------------------------------
Geometry step timings:
Preparation and reading OPT file: 0.000 s ( 0.813 %)
Internal coordinates : 0.000 s ( 0.610 %)
B/P matrices and projection : 0.002 s (57.753 %)
Hessian update/contruction : 0.000 s ( 5.807 %)
Making the step : 0.001 s (24.100 %)
Converting the step to Cartesian: 0.000 s ( 1.974 %)
Storing new data : 0.000 s ( 0.697 %)
Checking convergence : 0.000 s ( 0.842 %)
Final printing : 0.000 s ( 7.375 %)
Total time : 0.003 s
Time for energy+gradient : 5.147 s
Time for complete geometry iter : 5.752 s
*************************************************************
* GEOMETRY OPTIMIZATION CYCLE 6 *
*************************************************************
---------------------------------
CARTESIAN COORDINATES (ANGSTROEM)
---------------------------------
C -2.620807 0.070248 -0.104450
O -3.350623 -0.910870 -0.134935
C -1.145089 0.054563 -0.042117
C -0.442062 -1.166081 0.068011
C 0.946495 -1.179739 0.126209
C 1.671023 0.035205 0.081021
O 3.023543 0.092020 0.120690
C 0.971389 1.258527 -0.024837
C -0.419183 1.264032 -0.089710
H -3.019586 1.124358 -0.266386
H -1.046648 -2.084820 0.101421
H 1.501162 -2.130187 0.204475
H 3.348978 -0.829833 0.181317
H 1.553828 2.190410 -0.049649
H -0.972421 2.212166 -0.171060
----------------------------
CARTESIAN COORDINATES (A.U.)
----------------------------
NO LB ZA FRAG MASS X Y Z
0 C 6.0000 0 12.011 -4.952607 0.132750 -0.197381
1 O 8.0000 0 15.999 -6.331759 -1.721295 -0.254990
2 C 6.0000 0 12.011 -2.163905 0.103110 -0.079590
3 C 6.0000 0 12.011 -0.835376 -2.203573 0.128522
4 C 6.0000 0 12.011 1.788617 -2.229383 0.238500
5 C 6.0000 0 12.011 3.157775 0.066527 0.153107
6 O 8.0000 0 15.999 5.713668 0.173893 0.228071
7 C 6.0000 0 12.011 1.835659 2.378272 -0.046936
8 C 6.0000 0 12.011 -0.792141 2.388674 -0.169528
9 H 1.0000 0 1.008 -5.706190 2.124729 -0.503396
10 H 1.0000 0 1.008 -1.977879 -3.939738 0.191659
11 H 1.0000 0 1.008 2.836785 -4.025470 0.386402
12 H 1.0000 0 1.008 6.328652 -1.568157 0.342639
13 H 1.0000 0 1.008 2.936309 4.139275 -0.093824
14 H 1.0000 0 1.008 -1.837609 4.180388 -0.323256
--------------------------------
INTERNAL COORDINATES (ANGSTROEM)
--------------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 1.223173288825 0.00000000 0.00000000
C 1 2 0 1.477116912700 126.05963234 0.00000000
C 3 1 2 1.412921613832 120.63461419 356.22965796
C 4 3 1 1.389843165793 120.58812337 179.98185016
C 5 4 3 1.415298148089 120.11114436 0.26417464
O 6 5 4 1.354294108232 123.11581904 180.63888314
C 6 5 4 1.413227485786 119.47474618 359.93830557
C 8 6 5 1.392095431907 120.09481447 359.72486374
H 1 2 3 1.138593822665 122.01055638 171.38627248
H 4 3 1 1.100328581416 116.76377021 0.13899866
H 5 4 3 1.103237530055 120.91288414 180.46973768
H 7 6 5 0.979488524515 107.10624169 0.08497842
H 8 6 5 1.099206611619 118.24402332 179.48550726
H 9 8 6 1.100749256462 120.59065521 179.92731429
---------------------------
INTERNAL COORDINATES (A.U.)
---------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 2.311462530207 0.00000000 0.00000000
C 1 2 0 2.791346432786 126.05963234 0.00000000
C 3 1 2 2.670034898841 120.63461419 356.22965796
C 4 3 1 2.626422952451 120.58812337 179.98185016
C 5 4 3 2.674525897733 120.11114436 0.26417464
O 6 5 4 2.559244969341 123.11581904 180.63888314
C 6 5 4 2.670612913066 119.47474618 359.93830557
C 8 6 5 2.630679118586 120.09481447 359.72486374
H 1 2 3 2.151630502611 122.01055638 171.38627248
H 4 3 1 2.079319676203 116.76377021 0.13899866
H 5 4 3 2.084816792467 120.91288414 180.46973768
H 7 6 5 1.850965062652 107.10624169 0.08497842
H 8 6 5 2.077199460555 118.24402332 179.48550726
H 9 8 6 2.080114636830 120.59065521 179.92731429
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
___
/ \ - P O W E R E D B Y -
/ \
| | | _ _ __ _____ __ __
| | | | | | | / \ | _ \ | | / |
\ \/ | | | | / \ | | | | | | / /
/ \ \ | |__| | / /\ \ | |_| | | |/ /
| | | | __ | / /__\ \ | / | \
| | | | | | | | __ | | \ | |\ \
\ / | | | | | | | | | |\ \ | | \ \
\___/ |_| |_| |__| |__| |_| \__\ |__| \__/
- O R C A' S B I G F R I E N D -
&
- I N T E G R A L F E E D E R -
v1 FN, 2020, v2 2021, v3 2022-2024
------------------------------------------------------------------------------
----------------------
SHARK INTEGRAL PACKAGE
----------------------
Number of atoms ... 15
Number of basis functions ... 156
Number of shells ... 72
Maximum angular momentum ... 2
Integral batch strategy ... SHARK/LIBINT Hybrid
RI-J (if used) integral strategy ... SPLIT-RIJ (Revised 2003 algorithm where possible)
Printlevel ... 1
Contraction scheme used ... SEGMENTED contraction
Prescreening option ... SCHWARTZ
Thresh ... 2.500e-11
Tcut ... 2.500e-12
Tpresel ... 2.500e-12
Coulomb Range Separation ... NOT USED
Exchange Range Separation ... NOT USED
Multipole approximations ... NOT USED
Finite Nucleus Model ... NOT USED
CABS basis ... NOT available
Auxiliary Coulomb fitting basis ... AVAILABLE
# of basis functions in Aux-J ... 507
# of shells in Aux-J ... 165
Maximum angular momentum in Aux-J ... 4
Auxiliary J/K fitting basis ... NOT available
Auxiliary Correlation fitting basis ... NOT available
Auxiliary 'external' fitting basis ... NOT available
Checking pre-screening integrals ... done ( 0.0 sec) Dimension = 72
=> SHARK Basis and OBASIS are compatible. Storing Pre-screening
Shell pair information
Shell pair cut-off parameter TPreSel ... 2.5e-12
Total number of shell pairs ... 2628
Shell pairs after pre-screening ... 2415
Total number of primitive shell pairs ... 9726
Primitive shell pairs kept ... 6526
la=0 lb=0: 715 shell pairs
la=1 lb=0: 867 shell pairs
la=1 lb=1: 280 shell pairs
la=2 lb=0: 314 shell pairs
la=2 lb=1: 198 shell pairs
la=2 lb=2: 41 shell pairs
Checking whether 4 symmetric matrices of dimension 156 fit in memory
:Max Core in MB = 4096.00
MB in use = 6.66
MB left = 4089.34
MB needed = 0.37
Data fit in memory = YES
Calculating RI/J V-Matrix + Cholesky decomp.... done ( 0.0 sec)
Calculating Nuclear repulsion ... done ( 0.0 sec) ENN= 395.914939732046 Eh
Diagonalization of the overlap matrix:
Smallest eigenvalue ... 2.801e-04
Time for diagonalization ... 0.005 sec
Threshold for overlap eigenvalues ... 1.000e-07
Number of eigenvalues below threshold ... 0
Time for construction of square roots ... 0.001 sec
Total time needed ... 0.007 sec
-------------------
DFT GRID GENERATION
-------------------
General Integration Accuracy IntAcc ... 4.388
Radial Grid Type RadialGrid ... OptM3 with GC (2021)
Angular Grid (max. ang.) AngularGrid ... 4 (Lebedev-302)
Angular grid pruning method GridPruning ... 4 (adaptive)
Weight generation scheme WeightScheme... mBecke (2022)
Basis function cutoff BFCut ... 1.0000e-11
Integration weight cutoff WCut ... 1.0000e-14
Partially contracted basis set ... off
Rotationally invariant grid construction ... off
Angular grids for H and He will be reduced by one unit
Total number of grid points ... 73598
Total number of batches ... 1157
Average number of points per batch ... 63
Average number of grid points per atom ... 4907
Grids setup in 0.5 sec
Initializing property integral containers ... done ( 0.0 sec)
SHARK setup successfully completed in 0.7 seconds
Maximum memory used throughout the entire STARTUP-calculation: 19.9 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
Occupation numbers will be reassigned to an Aufbau configuration
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
Finished Guess after 0.4 sec
Maximum memory used throughout the entire GUESS-calculation: 9.2 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
----------------------------------------D-I-I-S--------------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP DIISErr Damp Time(sec)
-------------------------------------------------------------------------------------------
*** Starting incremental Fock matrix formation ***
1 -419.9844512695416370 0.00e+00 2.08e-03 3.38e-02 6.82e-02 0.700 0.5
2 -419.9883994392178010 -3.95e-03 1.82e-03 3.00e-02 4.95e-02 0.700 0.5
***Turning on AO-DIIS***
3 -419.9913642624312615 -2.96e-03 1.35e-03 2.18e-02 3.45e-02 0.700 0.1
4 -419.9934378615421338 -2.07e-03 3.28e-03 5.19e-02 2.43e-02 0.000 0.1
*** Initializing SOSCF ***
---------------------------------------S-O-S-C-F--------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP MaxGrad Time(sec)
--------------------------------------------------------------------------------------
5 -419.9982685067374177 -4.83e-03 1.98e-04 1.50e-03 1.03e-03 0.1
*** Restarting incremental Fock matrix formation ***
6 -419.9982710116291855 -2.50e-06 4.32e-04 5.00e-03 4.79e-04 0.1
7 -419.9982427028453458 2.83e-05 3.27e-04 4.22e-03 1.54e-03 0.1
8 -419.9982763349013339 -3.36e-05 9.17e-05 8.63e-04 1.18e-04 0.1
9 -419.9982751455482912 1.19e-06 5.88e-05 6.34e-04 2.83e-04 0.1
10 -419.9982766926635804 -1.55e-06 2.06e-05 1.83e-04 2.90e-05 0.1
11 -419.9982766405859138 5.21e-08 1.27e-05 1.36e-04 5.75e-05 0.1
12 -419.9982767058627360 -6.53e-08 8.06e-06 6.01e-05 1.45e-05 0.1
13 -419.9982767010430962 4.82e-09 4.93e-06 4.75e-05 2.83e-05 0.1
**** Energy Check signals convergence ****
*****************************************************
* SUCCESS *
* SCF CONVERGED AFTER 13 CYCLES *
*****************************************************
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
----------------
TOTAL SCF ENERGY
----------------
Total Energy : -419.99827671017329 Eh -11428.73413 eV
Components:
Nuclear Repulsion : 395.91493973204558 Eh 10773.39322 eV
Electronic Energy : -815.91321644221887 Eh -22202.12735 eV
One Electron Energy: -1354.99717748589296 Eh -36871.34770 eV
Two Electron Energy: 539.08396104367409 Eh 14669.22035 eV
Virial components:
Potential Energy : -836.04223748252105 Eh -22749.86586 eV
Kinetic Energy : 416.04396077234776 Eh 11321.13173 eV
Virial Ratio : 2.00950456276420
DFT components:
N(Alpha) : 31.999993740757 electrons
N(Beta) : 31.999993740757 electrons
N(Total) : 63.999987481515 electrons
E(X) : -54.608287011182 Eh
E(C) : -2.145140094685 Eh
E(XC) : -56.753427105867 Eh
---------------
SCF CONVERGENCE
---------------
Last Energy change ... -4.8196e-09 Tolerance : 1.0000e-08
Last MAX-Density change ... 4.7509e-05 Tolerance : 1.0000e-07
Last RMS-Density change ... 4.9320e-06 Tolerance : 5.0000e-09
Last DIIS Error ... 1.0328e-03 Tolerance : 5.0000e-07
Last Orbital Gradient ... 2.8339e-05 Tolerance : 1.0000e-05
Last Orbital Rotation ... 4.4100e-05 Tolerance : 1.0000e-05
Total SCF time: 0 days 0 hours 0 min 2 sec
Finished LeanSCF after 2.8 sec
Maximum memory used throughout the entire LEANSCF-calculation: 9.3 MB
-------------------------------------------------------------------------------
DFT DISPERSION CORRECTION
DFTD4 V3.4.0
-------------------------------------------------------------------------------
------------------------- ----------------
Dispersion correction -0.015290775
------------------------- ----------------
------------------------- --------------------
FINAL SINGLE POINT ENERGY -420.013567485421
------------------------- --------------------
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
ORCA SCF GRADIENT CALCULATION
------------------------------------------------------------------------------
Nuc. rep. gradient (SHARK) ... done ( 0.0 sec)
HCore & Overlap gradient (SHARK) ... done ( 0.0 sec)
Split-RIJ-J gradient (SHARK) ... done ( 0.1 sec)
XC gradient ... done ( 0.3 sec)
Dispersion correction ... done ( 0.0 sec)
-------------------
DISPERSION GRADIENT
-------------------
1 C : -0.000380346 0.000026523 -0.000017475
2 O : -0.000335109 -0.000094877 -0.000015743
3 C : -0.000211729 0.000010812 -0.000008322
4 C : -0.000054937 -0.000271533 0.000018272
5 C : 0.000198640 -0.000261289 0.000026326
6 C : 0.000272797 0.000000899 0.000012009
7 O : 0.000380597 -0.000014994 0.000015189
8 C : 0.000178671 0.000268261 -0.000007663
9 C : -0.000056870 0.000313977 -0.000019998
10 H : -0.000111728 0.000013368 -0.000008138
11 H : -0.000042866 -0.000112201 0.000005798
12 H : 0.000053200 -0.000110064 0.000009150
13 H : 0.000078214 0.000001926 0.000002640
14 H : 0.000059177 0.000102459 -0.000003353
15 H : -0.000027710 0.000126734 -0.000008691
Difference to translation invariance:
: 0.0000000000 -0.0000000000 -0.0000000000
Difference to rotation invariance:
: -0.0000000000 -0.0000000000 0.0000000000
Norm of the Dispersion gradient ... 0.0010015162
RMS gradient ... 0.0001492972
MAX gradient ... 0.0003805967
------------------
CARTESIAN GRADIENT
------------------
1 C : -0.000837059 -0.001817873 0.015550169
2 O : -0.002483215 -0.003017868 -0.005551073
3 C : -0.000625726 0.002276195 -0.004539524
4 C : 0.005281444 -0.001769270 0.000174488
5 C : -0.005117850 0.001434347 -0.000095003
6 C : 0.004579723 -0.004464040 0.001698171
7 O : 0.000766644 0.006847346 -0.000897532
8 C : -0.003127042 -0.001929630 -0.000199009
9 C : 0.001389939 0.002807104 -0.001345973
10 H : 0.003515830 0.002359994 -0.005128460
11 H : -0.001625943 0.001733247 -0.000153850
12 H : 0.000654154 0.000644498 -0.000120791
13 H : -0.001864767 -0.003280790 -0.000042980
14 H : -0.000177033 -0.000344637 0.000509740
15 H : -0.000329097 -0.001478623 0.000141629
Difference to translation invariance:
: 0.0000000000 0.0000000000 0.0000000000
Difference to rotation invariance:
: -0.0001219211 -0.0000179048 0.0001168302
Norm of the Cartesian gradient ... 0.0237139753
RMS gradient ... 0.0035350707
MAX gradient ... 0.0155501689
-------
TIMINGS
-------
Total SCF gradient time .... 0.436 sec
Densities .... 0.000 sec ( 0.1%)
One electron gradient .... 0.020 sec ( 4.6%)
RI-J Coulomb gradient .... 0.132 sec ( 30.2%)
XC gradient .... 0.252 sec ( 57.7%)
Maximum memory used throughout the entire SCFGRAD-calculation: 29.0 MB
------------------------------------------------------------------------------
ORCA GEOMETRY RELAXATION STEP
------------------------------------------------------------------------------
Reading the OPT-File .... done
Getting information on internals .... done
Copying old internal coords+grads .... done
Making the new internal coordinates .... (2022 redundants) done
Validating the new internal coordinates .... (2022 redundants) done
Calculating the B-matrix .... done
Calculating the G,G- and P matrices .... done
Transforming gradient to internals .... done
Projecting the internal gradient .... done
Number of atoms .... 15
Number of internal coordinates .... 67
Current Energy .... -420.013567485 Eh
Current gradient norm .... 0.023713975 Eh/bohr
Maximum allowed component of the step .... 0.300
Current trust radius .... 0.300
Updating the Hessian (BFGS) .... done
Forming the augmented Hessian .... done
Diagonalizing the augmented Hessian .... done
Last element of RFO vector .... 0.989090859
Lowest eigenvalues of augmented Hessian:
-0.001905042 0.008988506 0.016052304 0.025723754 0.026442367
Length of the computed step .... 0.148931445
The final length of the internal step .... 0.148931445
Converting the step to Cartesian space:
Initial RMS(Int)= 0.0181948719
Transforming coordinates:
Iter 0: RMS(Cart)= 0.0259176793 RMS(Int)= 1.8746877660
Iter 5: RMS(Cart)= 0.0000000177 RMS(Int)= 0.0000000124
done
Storing new coordinates .... done
The predicted energy change is .... -0.000973649
Previously predicted energy change .... -0.001789074
Actually observed energy change .... -0.000313764
Ratio of predicted to observed change .... 0.175377675
New trust radius .... 0.200000000
.--------------------.
----------------------|Geometry convergence|-------------------------
Item value Tolerance Converged
---------------------------------------------------------------------
Energy change -0.0003137636 0.0000050000 NO
RMS gradient 0.0020150976 0.0001000000 NO
MAX gradient 0.0067096556 0.0003000000 NO
RMS step 0.0181948719 0.0020000000 NO
MAX step 0.0684544167 0.0040000000 NO
-------------------------------------------------------------------------
........................................................
Max(Bonds) 0.0039 Max(Angles) 1.22
Max(Dihed) 3.92 Max(Improp) 0.00
---------------------------------------------------------------------
The optimization has not yet converged - more geometry cycles are needed
---------------------------------------------------------------------------
Redundant Internal Coordinates
(Angstroem and degrees)
Definition Value dE/dq Step New-Value
----------------------------------------------------------------------------
1. B(O 1,C 0) 1.2232 0.004039 -0.0004 1.2227
2. B(C 2,C 0) 1.4771 -0.000427 -0.0003 1.4768
3. B(C 3,C 2) 1.4129 0.000037 -0.0011 1.4118
4. B(C 4,C 3) 1.3898 -0.002319 0.0021 1.3919
5. B(C 5,C 4) 1.4153 -0.000030 -0.0010 1.4143
6. B(O 6,C 5) 1.3543 -0.000975 0.0017 1.3560
7. B(C 7,C 5) 1.4132 0.000345 -0.0011 1.4121
8. B(C 8,C 7) 1.3921 -0.001925 0.0012 1.3933
9. B(C 8,C 2) 1.4114 -0.000918 -0.0007 1.4107
10. B(H 9,C 0) 1.1386 0.001685 -0.0039 1.1347
11. B(H 10,C 3) 1.1003 -0.000558 0.0001 1.1005
12. B(H 11,C 4) 1.1032 -0.000235 -0.0006 1.1026
13. B(H 12,O 6) 0.9795 0.002468 -0.0018 0.9777
14. B(H 13,C 7) 1.0992 -0.000398 -0.0000 1.0992
15. B(H 14,C 8) 1.1007 -0.001119 0.0006 1.1013
16. A(O 1,C 0,C 2) 126.06 0.003148 -0.75 125.31
17. A(O 1,C 0,H 9) 122.01 0.002298 -0.46 121.55
18. A(C 2,C 0,H 9) 111.45 -0.006710 1.22 112.67
19. A(C 3,C 2,C 8) 119.15 -0.000008 0.03 119.17
20. A(C 0,C 2,C 8) 120.22 -0.001143 0.19 120.41
21. A(C 0,C 2,C 3) 120.63 0.001150 -0.22 120.42
22. A(C 4,C 3,H 10) 122.65 0.002240 -0.51 122.14
23. A(C 2,C 3,C 4) 120.59 0.000338 -0.05 120.54
24. A(C 2,C 3,H 10) 116.76 -0.002578 0.56 117.33
25. A(C 3,C 4,C 5) 120.11 0.000636 -0.14 119.97
26. A(C 5,C 4,H 11) 118.98 -0.001243 0.24 119.22
27. A(C 3,C 4,H 11) 120.91 0.000606 -0.11 120.81
28. A(O 6,C 5,C 7) 117.41 -0.001093 0.26 117.67
29. A(C 4,C 5,C 7) 119.47 -0.001896 0.32 119.79
30. A(C 4,C 5,O 6) 123.12 0.002984 -0.57 122.54
31. A(C 5,O 6,H 12) 107.11 -0.005283 1.17 108.28
32. A(C 5,C 7,C 8) 120.09 0.001828 -0.31 119.79
33. A(C 8,C 7,H 13) 121.66 -0.000841 0.12 121.78
34. A(C 5,C 7,H 13) 118.24 -0.000987 0.19 118.43
35. A(C 7,C 8,H 14) 120.59 0.001517 -0.30 120.29
36. A(C 2,C 8,C 7) 120.58 -0.000900 0.15 120.74
37. A(C 2,C 8,H 14) 118.82 -0.000619 0.15 118.97
38. D(C 3,C 2,C 0,H 9) -175.93 0.004973 -3.78 -179.71
39. D(C 8,C 2,C 0,O 1) 176.34 -0.005161 3.86 180.21
40. D(C 3,C 2,C 0,O 1) -3.77 -0.005290 3.92 0.15
41. D(C 8,C 2,C 0,H 9) 4.19 0.005102 -3.84 0.34
42. D(C 4,C 3,C 2,C 8) -0.13 0.000127 0.03 -0.10
43. D(H 10,C 3,C 2,C 0) 0.14 0.000204 -0.19 -0.05
44. D(C 4,C 3,C 2,C 0) 179.98 0.000256 -0.03 179.95
45. D(H 10,C 3,C 2,C 8) -179.97 0.000076 -0.13 -180.11
46. D(H 11,C 4,C 3,H 10) 0.30 0.000172 -0.21 0.10
47. D(C 5,C 4,C 3,H 10) -179.90 0.000131 -0.12 -180.02
48. D(H 11,C 4,C 3,C 2) -179.53 0.000126 -0.36 -179.89
49. D(C 5,C 4,C 3,C 2) 0.26 0.000085 -0.27 -0.01
50. D(C 7,C 5,C 4,C 3) -0.06 -0.000121 0.25 0.18
51. D(O 6,C 5,C 4,C 3) -179.36 0.000291 -0.44 -179.80
52. D(O 6,C 5,C 4,H 11) 0.44 0.000254 -0.35 0.09
53. D(C 7,C 5,C 4,H 11) 179.74 -0.000157 0.34 180.07
54. D(H 12,O 6,C 5,C 7) -179.23 0.000351 -1.95 -181.18
55. D(H 12,O 6,C 5,C 4) 0.08 -0.000059 -1.26 -1.18
56. D(H 13,C 7,C 5,O 6) -1.18 -0.000483 0.84 -0.34
57. D(H 13,C 7,C 5,C 4) 179.49 -0.000123 0.13 179.62
58. D(C 8,C 7,C 5,O 6) 179.06 -0.000425 0.73 179.79
59. D(C 8,C 7,C 5,C 4) -0.28 -0.000065 0.03 -0.25
60. D(H 14,C 8,C 7,H 13) 0.18 -0.000040 0.02 0.20
61. D(H 14,C 8,C 7,C 5) 179.93 -0.000101 0.13 180.06
62. D(C 2,C 8,C 7,H 13) -179.34 0.000339 -0.39 -179.73
63. D(C 2,C 8,C 7,C 5) 0.41 0.000279 -0.28 0.13
64. D(H 14,C 8,C 2,C 3) -179.73 0.000057 -0.16 -179.90
65. D(H 14,C 8,C 2,C 0) 0.15 -0.000068 -0.10 0.05
66. D(C 7,C 8,C 2,C 3) -0.21 -0.000306 0.25 0.05
67. D(C 7,C 8,C 2,C 0) 179.68 -0.000431 0.32 179.99
----------------------------------------------------------------------------
Geometry step timings:
Preparation and reading OPT file: 0.000 s ( 0.385 %)
Internal coordinates : 0.000 s ( 0.385 %)
B/P matrices and projection : 0.001 s (12.115 %)
Hessian update/contruction : 0.000 s ( 3.938 %)
Making the step : 0.000 s ( 8.818 %)
Converting the step to Cartesian: 0.000 s ( 1.070 %)
Storing new data : 0.000 s ( 0.449 %)
Checking convergence : 0.000 s ( 0.535 %)
Final printing : 0.003 s (72.282 %)
Total time : 0.005 s
Time for energy+gradient : 6.171 s
Time for complete geometry iter : 6.750 s
*************************************************************
* GEOMETRY OPTIMIZATION CYCLE 7 *
*************************************************************
---------------------------------
CARTESIAN COORDINATES (ANGSTROEM)
---------------------------------
C -2.619513 0.071538 -0.129938
O -3.339972 -0.915953 -0.099971
C -1.144468 0.058402 -0.058719
C -0.444997 -1.162987 0.051186
C 0.945274 -1.178318 0.117446
C 1.668143 0.036473 0.074469
O 3.022148 0.081980 0.131649
C 0.974775 1.262039 -0.031700
C -0.416916 1.266368 -0.098530
H -3.046530 1.118802 -0.221412
H -1.042696 -2.086487 0.081371
H 1.496144 -2.129738 0.201755
H 3.356129 -0.832499 0.221963
H 1.558528 2.193059 -0.057053
H -0.966050 2.217322 -0.182516
----------------------------
CARTESIAN COORDINATES (A.U.)
----------------------------
NO LB ZA FRAG MASS X Y Z
0 C 6.0000 0 12.011 -4.950163 0.135188 -0.245547
1 O 8.0000 0 15.999 -6.311632 -1.730901 -0.188918
2 C 6.0000 0 12.011 -2.162731 0.110364 -0.110962
3 C 6.0000 0 12.011 -0.840922 -2.197726 0.096727
4 C 6.0000 0 12.011 1.786310 -2.226699 0.221942
5 C 6.0000 0 12.011 3.152334 0.068925 0.140726
6 O 8.0000 0 15.999 5.711033 0.154919 0.248780
7 C 6.0000 0 12.011 1.842057 2.384909 -0.059904
8 C 6.0000 0 12.011 -0.787857 2.393088 -0.186194
9 H 1.0000 0 1.008 -5.757108 2.114230 -0.418409
10 H 1.0000 0 1.008 -1.970411 -3.942888 0.153768
11 H 1.0000 0 1.008 2.827302 -4.024622 0.381263
12 H 1.0000 0 1.008 6.342164 -1.573196 0.419449
13 H 1.0000 0 1.008 2.945190 4.144280 -0.107814
14 H 1.0000 0 1.008 -1.825569 4.190131 -0.344906
--------------------------------
INTERNAL COORDINATES (ANGSTROEM)
--------------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 1.222741992624 0.00000000 0.00000000
C 1 2 0 1.476822188376 125.46045378 0.00000000
C 3 1 2 1.411782031692 120.41810049 0.14234923
C 4 3 1 1.391933762353 120.53708408 179.94997226
C 5 4 3 1.414250682695 119.97443590 0.00000000
O 6 5 4 1.355975837599 122.54313170 180.17618091
C 6 5 4 1.412106234933 119.78886597 0.18642634
C 8 6 5 1.393301137871 119.78534686 359.75813950
H 1 2 3 1.134668445717 121.71042149 179.82981198
H 4 3 1 1.100458179083 117.32635682 359.95026941
H 5 4 3 1.102617535821 120.80708782 180.09557536
H 7 6 5 0.977737881152 108.27602590 358.82732909
H 8 6 5 1.099184691856 118.42996099 179.62929336
H 9 8 6 1.101324335875 120.28993385 180.06453895
---------------------------
INTERNAL COORDINATES (A.U.)
---------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 2.310647498504 0.00000000 0.00000000
C 1 2 0 2.790789484529 125.46045378 0.00000000
C 3 1 2 2.667881400689 120.41810049 0.14234923
C 4 3 1 2.630373607407 120.53708408 179.94997226
C 5 4 3 2.672546475004 119.97443590 0.00000000
O 6 5 4 2.562422977276 122.54313170 180.17618091
C 6 5 4 2.668494056026 119.78886597 0.18642634
C 8 6 5 2.632957572657 119.78534686 359.75813950
H 1 2 3 2.144212615207 121.71042149 179.82981198
H 4 3 1 2.079564580301 117.32635682 359.95026941
H 5 4 3 2.083645173160 120.80708782 180.09557536
H 7 6 5 1.847656826138 108.27602590 358.82732909
H 8 6 5 2.077158038207 118.42996099 179.62929336
H 9 8 6 2.081201379426 120.28993385 180.06453895
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
___
/ \ - P O W E R E D B Y -
/ \
| | | _ _ __ _____ __ __
| | | | | | | / \ | _ \ | | / |
\ \/ | | | | / \ | | | | | | / /
/ \ \ | |__| | / /\ \ | |_| | | |/ /
| | | | __ | / /__\ \ | / | \
| | | | | | | | __ | | \ | |\ \
\ / | | | | | | | | | |\ \ | | \ \
\___/ |_| |_| |__| |__| |_| \__\ |__| \__/
- O R C A' S B I G F R I E N D -
&
- I N T E G R A L F E E D E R -
v1 FN, 2020, v2 2021, v3 2022-2024
------------------------------------------------------------------------------
----------------------
SHARK INTEGRAL PACKAGE
----------------------
Number of atoms ... 15
Number of basis functions ... 156
Number of shells ... 72
Maximum angular momentum ... 2
Integral batch strategy ... SHARK/LIBINT Hybrid
RI-J (if used) integral strategy ... SPLIT-RIJ (Revised 2003 algorithm where possible)
Printlevel ... 1
Contraction scheme used ... SEGMENTED contraction
Prescreening option ... SCHWARTZ
Thresh ... 2.500e-11
Tcut ... 2.500e-12
Tpresel ... 2.500e-12
Coulomb Range Separation ... NOT USED
Exchange Range Separation ... NOT USED
Multipole approximations ... NOT USED
Finite Nucleus Model ... NOT USED
CABS basis ... NOT available
Auxiliary Coulomb fitting basis ... AVAILABLE
# of basis functions in Aux-J ... 507
# of shells in Aux-J ... 165
Maximum angular momentum in Aux-J ... 4
Auxiliary J/K fitting basis ... NOT available
Auxiliary Correlation fitting basis ... NOT available
Auxiliary 'external' fitting basis ... NOT available
Checking pre-screening integrals ... done ( 0.0 sec) Dimension = 72
=> SHARK Basis and OBASIS are compatible. Storing Pre-screening
Shell pair information
Shell pair cut-off parameter TPreSel ... 2.5e-12
Total number of shell pairs ... 2628
Shell pairs after pre-screening ... 2416
Total number of primitive shell pairs ... 9726
Primitive shell pairs kept ... 6528
la=0 lb=0: 715 shell pairs
la=1 lb=0: 867 shell pairs
la=1 lb=1: 280 shell pairs
la=2 lb=0: 315 shell pairs
la=2 lb=1: 198 shell pairs
la=2 lb=2: 41 shell pairs
Checking whether 4 symmetric matrices of dimension 156 fit in memory
:Max Core in MB = 4096.00
MB in use = 6.66
MB left = 4089.34
MB needed = 0.37
Data fit in memory = YES
Calculating RI/J V-Matrix + Cholesky decomp.... done ( 0.0 sec)
Calculating Nuclear repulsion ... done ( 0.0 sec) ENN= 396.023540770899 Eh
Diagonalization of the overlap matrix:
Smallest eigenvalue ... 2.806e-04
Time for diagonalization ... 0.002 sec
Threshold for overlap eigenvalues ... 1.000e-07
Number of eigenvalues below threshold ... 0
Time for construction of square roots ... 0.001 sec
Total time needed ... 0.003 sec
-------------------
DFT GRID GENERATION
-------------------
General Integration Accuracy IntAcc ... 4.388
Radial Grid Type RadialGrid ... OptM3 with GC (2021)
Angular Grid (max. ang.) AngularGrid ... 4 (Lebedev-302)
Angular grid pruning method GridPruning ... 4 (adaptive)
Weight generation scheme WeightScheme... mBecke (2022)
Basis function cutoff BFCut ... 1.0000e-11
Integration weight cutoff WCut ... 1.0000e-14
Partially contracted basis set ... off
Rotationally invariant grid construction ... off
Angular grids for H and He will be reduced by one unit
Total number of grid points ... 73594
Total number of batches ... 1157
Average number of points per batch ... 63
Average number of grid points per atom ... 4906
Grids setup in 0.2 sec
Initializing property integral containers ... done ( 0.0 sec)
SHARK setup successfully completed in 0.3 seconds
Maximum memory used throughout the entire STARTUP-calculation: 19.9 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
Occupation numbers will be reassigned to an Aufbau configuration
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
Finished Guess after 0.4 sec
Maximum memory used throughout the entire GUESS-calculation: 9.2 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
----------------------------------------D-I-I-S--------------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP DIISErr Damp Time(sec)
-------------------------------------------------------------------------------------------
*** Starting incremental Fock matrix formation ***
1 -419.9971719391224951 0.00e+00 7.05e-04 6.51e-03 2.09e-02 0.700 0.1
2 -419.9977732680823692 -6.01e-04 6.47e-04 5.88e-03 1.60e-02 0.700 0.1
***Turning on AO-DIIS***
3 -419.9982359542206041 -4.63e-04 4.90e-04 4.27e-03 1.15e-02 0.700 0.1
4 -419.9985631822512460 -3.27e-04 1.21e-03 1.06e-02 8.11e-03 0.000 0.1
*** Initializing SOSCF ***
---------------------------------------S-O-S-C-F--------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP MaxGrad Time(sec)
--------------------------------------------------------------------------------------
5 -419.9993277701046281 -7.65e-04 9.37e-05 8.44e-04 5.18e-04 0.1
*** Restarting incremental Fock matrix formation ***
6 -419.9993285105938412 -7.40e-07 2.32e-04 2.70e-03 2.59e-04 0.1
7 -419.9993214925796110 7.02e-06 1.68e-04 2.21e-03 9.29e-04 0.1
8 -419.9993300221844947 -8.53e-06 3.12e-05 1.91e-04 4.26e-05 0.1
9 -419.9993300195511665 2.63e-09 1.45e-05 8.30e-05 5.44e-05 0.1
**** Energy Check signals convergence ****
*****************************************************
* SUCCESS *
* SCF CONVERGED AFTER 9 CYCLES *
*****************************************************
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
----------------
TOTAL SCF ENERGY
----------------
Total Energy : -419.99933005593459 Eh -11428.76280 eV
Components:
Nuclear Repulsion : 396.02354077089933 Eh 10776.34840 eV
Electronic Energy : -816.02287082683392 Eh -22205.11120 eV
One Electron Energy: -1355.23943051274500 Eh -36877.93974 eV
Two Electron Energy: 539.21655968591108 Eh 14672.82854 eV
Virial components:
Potential Energy : -836.04596095866168 Eh -22749.96718 eV
Kinetic Energy : 416.04663090272714 Eh 11321.20439 eV
Virial Ratio : 2.00950061569933
DFT components:
N(Alpha) : 31.999988472369 electrons
N(Beta) : 31.999988472369 electrons
N(Total) : 63.999976944737 electrons
E(X) : -54.610424549968 Eh
E(C) : -2.145158237075 Eh
E(XC) : -56.755582787043 Eh
---------------
SCF CONVERGENCE
---------------
Last Energy change ... -2.6333e-09 Tolerance : 1.0000e-08
Last MAX-Density change ... 8.3015e-05 Tolerance : 1.0000e-07
Last RMS-Density change ... 1.4497e-05 Tolerance : 5.0000e-09
Last DIIS Error ... 5.1794e-04 Tolerance : 5.0000e-07
Last Orbital Gradient ... 5.4385e-05 Tolerance : 1.0000e-05
Last Orbital Rotation ... 1.3626e-04 Tolerance : 1.0000e-05
Total SCF time: 0 days 0 hours 0 min 1 sec
Finished LeanSCF after 1.2 sec
Maximum memory used throughout the entire LEANSCF-calculation: 9.3 MB
-------------------------------------------------------------------------------
DFT DISPERSION CORRECTION
DFTD4 V3.4.0
-------------------------------------------------------------------------------
------------------------- ----------------
Dispersion correction -0.015290540
------------------------- ----------------
------------------------- --------------------
FINAL SINGLE POINT ENERGY -420.014620595457
------------------------- --------------------
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
ORCA SCF GRADIENT CALCULATION
------------------------------------------------------------------------------
Nuc. rep. gradient (SHARK) ... done ( 0.0 sec)
HCore & Overlap gradient (SHARK) ... done ( 0.0 sec)
Split-RIJ-J gradient (SHARK) ... done ( 0.1 sec)
XC gradient ... done ( 0.3 sec)
Dispersion correction ... done ( 0.0 sec)
-------------------
DISPERSION GRADIENT
-------------------
1 C : -0.000380751 0.000026234 -0.000019914
2 O : -0.000334401 -0.000095870 -0.000009722
3 C : -0.000211859 0.000011025 -0.000010718
4 C : -0.000056806 -0.000270421 0.000014283
5 C : 0.000199159 -0.000260983 0.000025620
6 C : 0.000272128 0.000001117 0.000012563
7 O : 0.000380667 -0.000015755 0.000018651
8 C : 0.000178495 0.000269318 -0.000008022
9 C : -0.000055065 0.000314380 -0.000021907
10 H : -0.000111618 0.000013026 -0.000006314
11 H : -0.000043077 -0.000112097 0.000005028
12 H : 0.000053325 -0.000109969 0.000009268
13 H : 0.000078118 0.000000543 0.000003598
14 H : 0.000059035 0.000102565 -0.000003335
15 H : -0.000027351 0.000126889 -0.000009077
Difference to translation invariance:
: 0.0000000000 -0.0000000000 -0.0000000000
Difference to rotation invariance:
: 0.0000000000 -0.0000000000 0.0000000000
Norm of the Dispersion gradient ... 0.0010014980
RMS gradient ... 0.0001492945
MAX gradient ... 0.0003807513
------------------
CARTESIAN GRADIENT
------------------
1 C : 0.000154055 0.000086333 0.000262926
2 O : -0.001454196 -0.002020952 -0.000014348
3 C : 0.000004910 0.000945190 -0.000163634
4 C : 0.002273643 -0.000311423 0.000069569
5 C : -0.001454497 0.000781695 0.000002834
6 C : 0.000283896 -0.001341717 0.000000422
7 O : 0.001109893 0.002274471 -0.000475204
8 C : -0.002069423 -0.001404872 0.000006274
9 C : 0.000436560 0.001269271 -0.000074736
10 H : 0.001826359 0.000929452 -0.000082620
11 H : -0.000873766 0.001004334 -0.000078394
12 H : 0.000303214 0.000639499 -0.000035211
13 H : -0.000231953 -0.001614018 0.000359788
14 H : -0.000107963 -0.000266051 0.000183080
15 H : -0.000200731 -0.000971212 0.000039254
Difference to translation invariance:
: 0.0000000000 0.0000000000 0.0000000000
Difference to rotation invariance:
: -0.0000409895 -0.0000344176 0.0001018459
Norm of the Cartesian gradient ... 0.0064937467
RMS gradient ... 0.0009680306
MAX gradient ... 0.0022744713
-------
TIMINGS
-------
Total SCF gradient time .... 0.502 sec
Densities .... 0.000 sec ( 0.1%)
One electron gradient .... 0.020 sec ( 4.0%)
RI-J Coulomb gradient .... 0.138 sec ( 27.5%)
XC gradient .... 0.309 sec ( 61.5%)
Maximum memory used throughout the entire SCFGRAD-calculation: 29.0 MB
------------------------------------------------------------------------------
ORCA GEOMETRY RELAXATION STEP
------------------------------------------------------------------------------
Reading the OPT-File .... done
Getting information on internals .... done
Copying old internal coords+grads .... done
Making the new internal coordinates .... (2022 redundants) done
Validating the new internal coordinates .... (2022 redundants) done
Calculating the B-matrix .... done
Calculating the G,G- and P matrices .... done
Transforming gradient to internals .... done
Projecting the internal gradient .... done
Number of atoms .... 15
Number of internal coordinates .... 67
Current Energy .... -420.014620595 Eh
Current gradient norm .... 0.006493747 Eh/bohr
Maximum allowed component of the step .... 0.300
Current trust radius .... 0.200
Updating the Hessian (BFGS) .... done
Forming the augmented Hessian .... done
Diagonalizing the augmented Hessian .... done
Last element of RFO vector .... 0.999698827
Lowest eigenvalues of augmented Hessian:
-0.000124319 0.009013249 0.016051455 0.025722032 0.026450218
Length of the computed step .... 0.024548264
The final length of the internal step .... 0.024548264
Converting the step to Cartesian space:
Initial RMS(Int)= 0.0029990478
Transforming coordinates:
Iter 0: RMS(Cart)= 0.0062341656 RMS(Int)= 1.0855001135
done
Storing new coordinates .... done
The predicted energy change is .... -0.000062197
Previously predicted energy change .... -0.000973649
Actually observed energy change .... -0.001053110
Ratio of predicted to observed change .... 1.081611979
New trust radius .... 0.300000000
.--------------------.
----------------------|Geometry convergence|-------------------------
Item value Tolerance Converged
---------------------------------------------------------------------
Energy change -0.0010531100 0.0000050000 NO
RMS gradient 0.0007752712 0.0001000000 NO
MAX gradient 0.0029120288 0.0003000000 NO
RMS step 0.0029990478 0.0020000000 NO
MAX step 0.0122117543 0.0040000000 NO
-------------------------------------------------------------------------
........................................................
Max(Bonds) 0.0016 Max(Angles) 0.70
Max(Dihed) 0.29 Max(Improp) 0.00
---------------------------------------------------------------------
The optimization has not yet converged - more geometry cycles are needed
---------------------------------------------------------------------------
Redundant Internal Coordinates
(Angstroem and degrees)
Definition Value dE/dq Step New-Value
----------------------------------------------------------------------------
1. B(O 1,C 0) 1.2227 0.002487 -0.0011 1.2216
2. B(C 2,C 0) 1.4768 -0.000543 0.0004 1.4772
3. B(C 3,C 2) 1.4118 -0.000542 0.0000 1.4118
4. B(C 4,C 3) 1.3919 -0.000918 0.0010 1.3930
5. B(C 5,C 4) 1.4143 -0.000922 0.0004 1.4147
6. B(O 6,C 5) 1.3560 0.000893 -0.0005 1.3555
7. B(C 7,C 5) 1.4121 -0.000014 -0.0003 1.4118
8. B(C 8,C 7) 1.3933 -0.001243 0.0012 1.3945
9. B(C 8,C 2) 1.4107 -0.001247 0.0006 1.4113
10. B(H 9,C 0) 1.1347 0.000179 -0.0011 1.1336
11. B(H 10,C 3) 1.1005 -0.000370 0.0004 1.1008
12. B(H 11,C 4) 1.1026 -0.000403 0.0002 1.1028
13. B(H 12,O 6) 0.9777 0.001465 -0.0016 0.9761
14. B(H 13,C 7) 1.0992 -0.000287 0.0002 1.0994
15. B(H 14,C 8) 1.1013 -0.000742 0.0008 1.1021
16. A(O 1,C 0,C 2) 125.46 0.001446 -0.35 125.11
17. A(O 1,C 0,H 9) 121.71 0.001466 -0.29 121.42
18. A(C 2,C 0,H 9) 112.83 -0.002912 0.70 113.53
19. A(C 3,C 2,C 8) 119.18 0.000114 -0.00 119.17
20. A(C 0,C 2,C 8) 120.41 -0.000838 0.15 120.56
21. A(C 0,C 2,C 3) 120.42 0.000724 -0.15 120.27
22. A(C 4,C 3,H 10) 122.14 0.001211 -0.30 121.84
23. A(C 2,C 3,C 4) 120.54 0.000244 -0.04 120.49
24. A(C 2,C 3,H 10) 117.33 -0.001455 0.34 117.67
25. A(C 3,C 4,C 5) 119.97 0.000098 -0.04 119.93
26. A(C 5,C 4,H 11) 119.22 -0.000654 0.15 119.37
27. A(C 3,C 4,H 11) 120.81 0.000556 -0.11 120.70
28. A(O 6,C 5,C 7) 117.67 0.000342 0.00 117.67
29. A(C 4,C 5,C 7) 119.79 -0.000892 0.17 119.96
30. A(C 4,C 5,O 6) 122.54 0.000551 -0.18 122.37
31. A(C 5,O 6,H 12) 108.28 -0.001422 0.43 108.71
32. A(C 5,C 7,C 8) 119.79 0.001025 -0.20 119.59
33. A(C 8,C 7,H 13) 121.78 -0.000446 0.08 121.87
34. A(C 5,C 7,H 13) 118.43 -0.000579 0.12 118.55
35. A(C 7,C 8,H 14) 120.29 0.000979 -0.21 120.08
36. A(C 2,C 8,C 7) 120.74 -0.000588 0.11 120.85
37. A(C 2,C 8,H 14) 118.97 -0.000391 0.10 119.07
38. D(C 3,C 2,C 0,H 9) -179.70 0.000093 -0.23 -179.93
39. D(C 8,C 2,C 0,O 1) -179.80 -0.000062 0.10 -179.71
40. D(C 3,C 2,C 0,O 1) 0.14 -0.000085 0.15 0.29
41. D(C 8,C 2,C 0,H 9) 0.35 0.000117 -0.29 0.07
42. D(C 4,C 3,C 2,C 8) -0.10 -0.000021 0.05 -0.05
43. D(H 10,C 3,C 2,C 0) -0.05 -0.000006 0.01 -0.04
44. D(C 4,C 3,C 2,C 0) 179.95 0.000003 -0.00 179.95
45. D(H 10,C 3,C 2,C 8) 179.90 -0.000030 0.07 179.96
46. D(H 11,C 4,C 3,H 10) 0.10 0.000024 -0.07 0.03
47. D(C 5,C 4,C 3,H 10) 179.99 -0.000015 0.03 180.02
48. D(H 11,C 4,C 3,C 2) -179.90 0.000015 -0.06 -179.97
49. D(C 5,C 4,C 3,C 2) -0.01 -0.000024 0.04 0.02
50. D(C 7,C 5,C 4,C 3) 0.19 0.000069 -0.15 0.03
51. D(O 6,C 5,C 4,C 3) -179.82 0.000025 -0.10 -179.92
52. D(O 6,C 5,C 4,H 11) 0.07 -0.000012 0.00 0.07
53. D(C 7,C 5,C 4,H 11) -179.92 0.000032 -0.05 -179.98
54. D(H 12,O 6,C 5,C 7) 178.82 -0.000227 0.20 179.02
55. D(H 12,O 6,C 5,C 4) -1.17 -0.000184 0.14 -1.03
56. D(H 13,C 7,C 5,O 6) -0.36 -0.000072 0.19 -0.17
57. D(H 13,C 7,C 5,C 4) 179.63 -0.000114 0.28 179.91
58. D(C 8,C 7,C 5,O 6) 179.77 -0.000032 0.09 179.86
59. D(C 8,C 7,C 5,C 4) -0.24 -0.000074 0.17 -0.07
60. D(H 14,C 8,C 7,H 13) 0.20 0.000053 -0.13 0.07
61. D(H 14,C 8,C 7,C 5) -179.94 0.000011 -0.02 -179.96
62. D(C 2,C 8,C 7,H 13) -179.74 0.000072 -0.18 -179.93
63. D(C 2,C 8,C 7,C 5) 0.13 0.000031 -0.08 0.05
64. D(H 14,C 8,C 2,C 3) -179.89 0.000036 -0.09 -179.98
65. D(H 14,C 8,C 2,C 0) 0.05 0.000013 -0.03 0.02
66. D(C 7,C 8,C 2,C 3) 0.05 0.000018 -0.03 0.01
67. D(C 7,C 8,C 2,C 0) 179.99 -0.000005 0.02 180.02
----------------------------------------------------------------------------
Geometry step timings:
Preparation and reading OPT file: 0.000 s ( 0.876 %)
Internal coordinates : 0.000 s ( 0.969 %)
B/P matrices and projection : 0.001 s (27.422 %)
Hessian update/contruction : 0.000 s ( 8.718 %)
Making the step : 0.001 s (24.216 %)
Converting the step to Cartesian: 0.000 s ( 2.122 %)
Storing new data : 0.000 s ( 0.969 %)
Checking convergence : 0.000 s ( 1.614 %)
Final printing : 0.001 s (33.003 %)
Total time : 0.004 s
Time for energy+gradient : 4.062 s
Time for complete geometry iter : 4.653 s
*************************************************************
* GEOMETRY OPTIMIZATION CYCLE 8 *
*************************************************************
---------------------------------
CARTESIAN COORDINATES (ANGSTROEM)
---------------------------------
C -2.620268 0.072461 -0.130816
O -3.332688 -0.919387 -0.098559
C -1.144831 0.060947 -0.059246
C -0.447244 -1.161620 0.049894
C 0.944039 -1.178099 0.116652
C 1.667145 0.037129 0.075697
O 3.020670 0.078468 0.135232
C 0.977825 1.264442 -0.032032
C -0.415033 1.268246 -0.098901
H -3.060646 1.113365 -0.217606
H -1.040997 -2.088119 0.079375
H 1.492366 -2.131140 0.201281
H 3.358227 -0.833224 0.223052
H 1.562806 2.194858 -0.060224
H -0.961370 2.221674 -0.183800
----------------------------
CARTESIAN COORDINATES (A.U.)
----------------------------
NO LB ZA FRAG MASS X Y Z
0 C 6.0000 0 12.011 -4.951589 0.136932 -0.247207
1 O 8.0000 0 15.999 -6.297867 -1.737390 -0.186250
2 C 6.0000 0 12.011 -2.163418 0.115172 -0.111958
3 C 6.0000 0 12.011 -0.845169 -2.195144 0.094287
4 C 6.0000 0 12.011 1.783975 -2.226284 0.220440
5 C 6.0000 0 12.011 3.150447 0.070163 0.143047
6 O 8.0000 0 15.999 5.708239 0.148283 0.255552
7 C 6.0000 0 12.011 1.847822 2.389449 -0.060531
8 C 6.0000 0 12.011 -0.784299 2.396638 -0.186895
9 H 1.0000 0 1.008 -5.783783 2.103955 -0.411217
10 H 1.0000 0 1.008 -1.967199 -3.945973 0.149996
11 H 1.0000 0 1.008 2.820164 -4.027271 0.380367
12 H 1.0000 0 1.008 6.346129 -1.574564 0.421507
13 H 1.0000 0 1.008 2.953275 4.147680 -0.113807
14 H 1.0000 0 1.008 -1.816727 4.198355 -0.347331
--------------------------------
INTERNAL COORDINATES (ANGSTROEM)
--------------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 1.221615768071 0.00000000 0.00000000
C 1 2 0 1.477216273572 125.09037292 0.00000000
C 3 1 2 1.411810411414 120.26553600 0.29186597
C 4 3 1 1.392981087423 120.49444278 179.94866380
C 5 4 3 1.414686328955 119.93186118 0.02829942
O 6 5 4 1.355464608516 122.36680222 180.09301348
C 6 5 4 1.411759110767 119.96117135 0.03322000
C 8 6 5 1.394467769023 119.58651621 359.92842608
H 1 2 3 1.133554726895 121.40030529 180.24023608
H 4 3 1 1.100823014518 117.67060151 359.96047683
H 5 4 3 1.102775186831 120.69850370 180.03998646
H 7 6 5 0.976134505058 108.71022799 358.96517198
H 8 6 5 1.099395855671 118.54709521 179.89950815
H 9 8 6 1.102141809870 120.07855254 180.04146182
---------------------------
INTERNAL COORDINATES (A.U.)
---------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 2.308519242534 0.00000000 0.00000000
C 1 2 0 2.791534197624 125.09037292 0.00000000
C 3 1 2 2.667935030591 120.26553600 0.29186597
C 4 3 1 2.632352764962 120.49444278 179.94866380
C 5 4 3 2.673369727127 119.93186118 0.02829942
O 6 5 4 2.561456894319 122.36680222 180.09301348
C 6 5 4 2.667838086417 119.96117135 0.03322000
C 8 6 5 2.635162186033 119.58651621 359.92842608
H 1 2 3 2.142107991643 121.40030529 180.24023608
H 4 3 1 2.080254019357 117.67060151 359.96047683
H 5 4 3 2.083943090395 120.69850370 180.03998646
H 7 6 5 1.844626884430 108.71022799 358.96517198
H 8 6 5 2.077557079986 118.54709521 179.89950815
H 9 8 6 2.082746181399 120.07855254 180.04146182
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
___
/ \ - P O W E R E D B Y -
/ \
| | | _ _ __ _____ __ __
| | | | | | | / \ | _ \ | | / |
\ \/ | | | | / \ | | | | | | / /
/ \ \ | |__| | / /\ \ | |_| | | |/ /
| | | | __ | / /__\ \ | / | \
| | | | | | | | __ | | \ | |\ \
\ / | | | | | | | | | |\ \ | | \ \
\___/ |_| |_| |__| |__| |_| \__\ |__| \__/
- O R C A' S B I G F R I E N D -
&
- I N T E G R A L F E E D E R -
v1 FN, 2020, v2 2021, v3 2022-2024
------------------------------------------------------------------------------
----------------------
SHARK INTEGRAL PACKAGE
----------------------
Number of atoms ... 15
Number of basis functions ... 156
Number of shells ... 72
Maximum angular momentum ... 2
Integral batch strategy ... SHARK/LIBINT Hybrid
RI-J (if used) integral strategy ... SPLIT-RIJ (Revised 2003 algorithm where possible)
Printlevel ... 1
Contraction scheme used ... SEGMENTED contraction
Prescreening option ... SCHWARTZ
Thresh ... 2.500e-11
Tcut ... 2.500e-12
Tpresel ... 2.500e-12
Coulomb Range Separation ... NOT USED
Exchange Range Separation ... NOT USED
Multipole approximations ... NOT USED
Finite Nucleus Model ... NOT USED
CABS basis ... NOT available
Auxiliary Coulomb fitting basis ... AVAILABLE
# of basis functions in Aux-J ... 507
# of shells in Aux-J ... 165
Maximum angular momentum in Aux-J ... 4
Auxiliary J/K fitting basis ... NOT available
Auxiliary Correlation fitting basis ... NOT available
Auxiliary 'external' fitting basis ... NOT available
Checking pre-screening integrals ... done ( 0.0 sec) Dimension = 72
=> SHARK Basis and OBASIS are compatible. Storing Pre-screening
Shell pair information
Shell pair cut-off parameter TPreSel ... 2.5e-12
Total number of shell pairs ... 2628
Shell pairs after pre-screening ... 2417
Total number of primitive shell pairs ... 9726
Primitive shell pairs kept ... 6529
la=0 lb=0: 715 shell pairs
la=1 lb=0: 868 shell pairs
la=1 lb=1: 280 shell pairs
la=2 lb=0: 315 shell pairs
la=2 lb=1: 198 shell pairs
la=2 lb=2: 41 shell pairs
Checking whether 4 symmetric matrices of dimension 156 fit in memory
:Max Core in MB = 4096.00
MB in use = 6.66
MB left = 4089.34
MB needed = 0.37
Data fit in memory = YES
Calculating RI/J V-Matrix + Cholesky decomp.... done ( 0.0 sec)
Calculating Nuclear repulsion ... done ( 0.0 sec) ENN= 396.052846750425 Eh
Diagonalization of the overlap matrix:
Smallest eigenvalue ... 2.821e-04
Time for diagonalization ... 0.002 sec
Threshold for overlap eigenvalues ... 1.000e-07
Number of eigenvalues below threshold ... 0
Time for construction of square roots ... 0.000 sec
Total time needed ... 0.002 sec
-------------------
DFT GRID GENERATION
-------------------
General Integration Accuracy IntAcc ... 4.388
Radial Grid Type RadialGrid ... OptM3 with GC (2021)
Angular Grid (max. ang.) AngularGrid ... 4 (Lebedev-302)
Angular grid pruning method GridPruning ... 4 (adaptive)
Weight generation scheme WeightScheme... mBecke (2022)
Basis function cutoff BFCut ... 1.0000e-11
Integration weight cutoff WCut ... 1.0000e-14
Partially contracted basis set ... off
Rotationally invariant grid construction ... off
Angular grids for H and He will be reduced by one unit
Total number of grid points ... 73597
Total number of batches ... 1157
Average number of points per batch ... 63
Average number of grid points per atom ... 4906
Grids setup in 0.3 sec
Initializing property integral containers ... done ( 0.0 sec)
SHARK setup successfully completed in 0.3 seconds
Maximum memory used throughout the entire STARTUP-calculation: 19.9 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
Occupation numbers will be reassigned to an Aufbau configuration
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
Finished Guess after 0.6 sec
Maximum memory used throughout the entire GUESS-calculation: 9.2 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
----------------------------------------D-I-I-S--------------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP DIISErr Damp Time(sec)
-------------------------------------------------------------------------------------------
*** Starting incremental Fock matrix formation ***
1 -419.9993560881637222 0.00e+00 1.75e-04 9.18e-04 3.82e-03 0.700 0.1
*** Initializing SOSCF ***
---------------------------------------S-O-S-C-F--------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP MaxGrad Time(sec)
--------------------------------------------------------------------------------------
2 -419.9993731105633969 -1.70e-05 5.09e-04 2.72e-03 2.91e-03 0.1
*** Restarting incremental Fock matrix formation ***
3 -419.9994142245915327 -4.11e-05 1.01e-04 5.29e-04 1.18e-04 0.1
4 -419.9994133357920418 8.89e-07 6.16e-05 3.82e-04 2.53e-04 0.1
5 -419.9994147889846090 -1.45e-06 4.37e-05 3.89e-04 4.23e-05 0.1
6 -419.9994145898479019 1.99e-07 3.16e-05 3.41e-04 1.16e-04 0.1
7 -419.9994148431965186 -2.53e-07 1.41e-05 1.09e-04 1.87e-05 0.1
8 -419.9994148157577456 2.74e-08 8.91e-06 7.33e-05 3.88e-05 0.1
9 -419.9994148502253211 -3.45e-08 4.71e-06 2.81e-05 4.56e-06 0.1
10 -419.9994148505757039 -3.50e-10 2.83e-06 1.94e-05 7.70e-06 0.1
**** Energy Check signals convergence ****
*****************************************************
* SUCCESS *
* SCF CONVERGED AFTER 10 CYCLES *
*****************************************************
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
----------------
TOTAL SCF ENERGY
----------------
Total Energy : -419.99941484938165 Eh -11428.76511 eV
Components:
Nuclear Repulsion : 396.05284675042458 Eh 10777.14586 eV
Electronic Energy : -816.05226159980623 Eh -22205.91096 eV
One Electron Energy: -1355.30914614748303 Eh -36879.83680 eV
Two Electron Energy: 539.25688454767680 Eh 14673.92584 eV
Virial components:
Potential Energy : -836.04490011935468 Eh -22749.93832 eV
Kinetic Energy : 416.04548526997297 Eh 11321.17321 eV
Virial Ratio : 2.00950359929238
DFT components:
N(Alpha) : 31.999989539870 electrons
N(Beta) : 31.999989539870 electrons
N(Total) : 63.999979079739 electrons
E(X) : -54.610578627445 Eh
E(C) : -2.145130527582 Eh
E(XC) : -56.755709155028 Eh
---------------
SCF CONVERGENCE
---------------
Last Energy change ... 3.5038e-10 Tolerance : 1.0000e-08
Last MAX-Density change ... 1.9387e-05 Tolerance : 1.0000e-07
Last RMS-Density change ... 2.8277e-06 Tolerance : 5.0000e-09
Last DIIS Error ... 2.9080e-03 Tolerance : 5.0000e-07
Last Orbital Gradient ... 7.6976e-06 Tolerance : 1.0000e-05
Last Orbital Rotation ... 1.3420e-05 Tolerance : 1.0000e-05
Total SCF time: 0 days 0 hours 0 min 1 sec
Finished LeanSCF after 1.3 sec
Maximum memory used throughout the entire LEANSCF-calculation: 9.4 MB
-------------------------------------------------------------------------------
DFT DISPERSION CORRECTION
DFTD4 V3.4.0
-------------------------------------------------------------------------------
------------------------- ----------------
Dispersion correction -0.015288046
------------------------- ----------------
------------------------- --------------------
FINAL SINGLE POINT ENERGY -420.014702895772
------------------------- --------------------
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
ORCA SCF GRADIENT CALCULATION
------------------------------------------------------------------------------
Nuc. rep. gradient (SHARK) ... done ( 0.0 sec)
HCore & Overlap gradient (SHARK) ... done ( 0.0 sec)
Split-RIJ-J gradient (SHARK) ... done ( 0.1 sec)
XC gradient ... done ( 0.3 sec)
Dispersion correction ... done ( 0.0 sec)
-------------------
DISPERSION GRADIENT
-------------------
1 C : -0.000381020 0.000026168 -0.000019949
2 O : -0.000333797 -0.000096404 -0.000009461
3 C : -0.000212387 0.000011136 -0.000010846
4 C : -0.000058147 -0.000270110 0.000013878
5 C : 0.000199409 -0.000261114 0.000025520
6 C : 0.000271931 0.000001244 0.000012775
7 O : 0.000380739 -0.000015829 0.000019097
8 C : 0.000178713 0.000269997 -0.000008142
9 C : -0.000054080 0.000314956 -0.000022061
10 H : -0.000111475 0.000012630 -0.000006136
11 H : -0.000043117 -0.000111993 0.000004906
12 H : 0.000053246 -0.000110044 0.000009249
13 H : 0.000078079 -0.000000140 0.000003763
14 H : 0.000058987 0.000102446 -0.000003457
15 H : -0.000027082 0.000127057 -0.000009137
Difference to translation invariance:
: -0.0000000000 -0.0000000000 0.0000000000
Difference to rotation invariance:
: -0.0000000000 -0.0000000000 0.0000000000
Norm of the Dispersion gradient ... 0.0010019372
RMS gradient ... 0.0001493600
MAX gradient ... 0.0003810195
------------------
CARTESIAN GRADIENT
------------------
1 C : -0.000654937 -0.000025784 -0.000502283
2 O : 0.000158994 -0.000273232 0.000200016
3 C : -0.000095587 -0.000061381 0.000131188
4 C : 0.000883479 0.000035005 0.000024344
5 C : -0.000175379 0.000188441 -0.000075816
6 C : -0.000456409 -0.000014874 0.000024316
7 O : 0.000612181 0.000075468 -0.000262486
8 C : -0.000731195 -0.000788597 0.000047361
9 C : 0.000110599 0.000612429 0.000008055
10 H : 0.000934141 0.000130030 0.000173550
11 H : -0.000525138 0.000409012 -0.000033126
12 H : 0.000171641 0.000341385 -0.000006438
13 H : -0.000042609 -0.000190393 0.000218508
14 H : 0.000015856 -0.000072399 0.000047530
15 H : -0.000205637 -0.000365111 0.000005281
Difference to translation invariance:
: -0.0000000000 0.0000000000 -0.0000000000
Difference to rotation invariance:
: -0.0000454774 -0.0000515224 0.0001149118
Norm of the Cartesian gradient ... 0.0023853674
RMS gradient ... 0.0003555896
MAX gradient ... 0.0009341406
-------
TIMINGS
-------
Total SCF gradient time .... 0.553 sec
Densities .... 0.000 sec ( 0.1%)
One electron gradient .... 0.024 sec ( 4.3%)
RI-J Coulomb gradient .... 0.142 sec ( 25.7%)
XC gradient .... 0.348 sec ( 63.0%)
Maximum memory used throughout the entire SCFGRAD-calculation: 29.0 MB
------------------------------------------------------------------------------
ORCA GEOMETRY RELAXATION STEP
------------------------------------------------------------------------------
Reading the OPT-File .... done
Getting information on internals .... done
Copying old internal coords+grads .... done
Making the new internal coordinates .... (2022 redundants) done
Validating the new internal coordinates .... (2022 redundants) done
Calculating the B-matrix .... done
Calculating the G,G- and P matrices .... done
Transforming gradient to internals .... done
Projecting the internal gradient .... done
Number of atoms .... 15
Number of internal coordinates .... 67
Current Energy .... -420.014702896 Eh
Current gradient norm .... 0.002385367 Eh/bohr
Maximum allowed component of the step .... 0.300
Current trust radius .... 0.300
Updating the Hessian (BFGS) .... done
Forming the augmented Hessian .... done
Diagonalizing the augmented Hessian .... done
Last element of RFO vector .... 0.999638262
Lowest eigenvalues of augmented Hessian:
-0.000034846 0.008902631 0.016033806 0.025724063 0.026450536
Length of the computed step .... 0.026904826
The final length of the internal step .... 0.026904826
Converting the step to Cartesian space:
Initial RMS(Int)= 0.0032869477
Transforming coordinates:
Iter 0: RMS(Cart)= 0.0047865660 RMS(Int)= 1.8799063243
done
Storing new coordinates .... done
The predicted energy change is .... -0.000017436
Previously predicted energy change .... -0.000062197
Actually observed energy change .... -0.000082300
Ratio of predicted to observed change .... 1.323218596
New trust radius .... 0.300000000
.--------------------.
----------------------|Geometry convergence|-------------------------
Item value Tolerance Converged
---------------------------------------------------------------------
Energy change -0.0000823003 0.0000050000 NO
RMS gradient 0.0003037636 0.0001000000 NO
MAX gradient 0.0010758046 0.0003000000 NO
RMS step 0.0032869477 0.0020000000 NO
MAX step 0.0166326485 0.0040000000 NO
-------------------------------------------------------------------------
........................................................
Max(Bonds) 0.0008 Max(Angles) 0.38
Max(Dihed) 0.95 Max(Improp) 0.00
---------------------------------------------------------------------
The optimization has not yet converged - more geometry cycles are needed
---------------------------------------------------------------------------
Redundant Internal Coordinates
(Angstroem and degrees)
Definition Value dE/dq Step New-Value
----------------------------------------------------------------------------
1. B(O 1,C 0) 1.2216 0.000133 -0.0001 1.2215
2. B(C 2,C 0) 1.4772 -0.000433 0.0006 1.4778
3. B(C 3,C 2) 1.4118 -0.000352 0.0002 1.4120
4. B(C 4,C 3) 1.3930 -0.000199 0.0004 1.3934
5. B(C 5,C 4) 1.4147 -0.000512 0.0005 1.4152
6. B(O 6,C 5) 1.3555 0.000563 -0.0008 1.3547
7. B(C 7,C 5) 1.4118 -0.000157 0.0001 1.4118
8. B(C 8,C 7) 1.3945 -0.000406 0.0006 1.3951
9. B(C 8,C 2) 1.4113 -0.000491 0.0005 1.4118
10. B(H 9,C 0) 1.1336 -0.000255 0.0000 1.1336
11. B(H 10,C 3) 1.1008 -0.000062 0.0001 1.1009
12. B(H 11,C 4) 1.1028 -0.000210 0.0003 1.1030
13. B(H 12,O 6) 0.9761 0.000185 -0.0004 0.9758
14. B(H 13,C 7) 1.0994 -0.000054 0.0000 1.0994
15. B(H 14,C 8) 1.1021 -0.000214 0.0004 1.1026
16. A(O 1,C 0,C 2) 125.09 0.000190 -0.15 124.94
17. A(O 1,C 0,H 9) 121.40 0.000885 -0.26 121.14
18. A(C 2,C 0,H 9) 113.51 -0.001076 0.38 113.89
19. A(C 3,C 2,C 8) 119.17 0.000144 -0.02 119.15
20. A(C 0,C 2,C 8) 120.56 -0.000496 0.13 120.69
21. A(C 0,C 2,C 3) 120.27 0.000352 -0.10 120.16
22. A(C 4,C 3,H 10) 121.83 0.000652 -0.21 121.63
23. A(C 2,C 3,C 4) 120.49 0.000079 -0.02 120.47
24. A(C 2,C 3,H 10) 117.67 -0.000731 0.23 117.90
25. A(C 3,C 4,C 5) 119.93 -0.000080 -0.00 119.93
26. A(C 5,C 4,H 11) 119.37 -0.000291 0.11 119.47
27. A(C 3,C 4,H 11) 120.70 0.000370 -0.10 120.60
28. A(O 6,C 5,C 7) 117.67 0.000356 -0.06 117.62
29. A(C 4,C 5,C 7) 119.96 -0.000183 0.07 120.04
30. A(C 4,C 5,O 6) 122.37 -0.000172 -0.02 122.35
31. A(C 5,O 6,H 12) 108.71 -0.000192 0.16 108.87
32. A(C 5,C 7,C 8) 119.59 0.000372 -0.12 119.47
33. A(C 8,C 7,H 13) 121.87 -0.000127 0.04 121.91
34. A(C 5,C 7,H 13) 118.55 -0.000245 0.07 118.62
35. A(C 7,C 8,H 14) 120.08 0.000540 -0.16 119.92
36. A(C 2,C 8,C 7) 120.85 -0.000333 0.09 120.94
37. A(C 2,C 8,H 14) 119.07 -0.000207 0.07 119.14
38. D(C 3,C 2,C 0,H 9) -179.93 -0.000136 -0.01 -179.94
39. D(C 8,C 2,C 0,O 1) -179.71 0.000165 -0.13 -179.83
40. D(C 3,C 2,C 0,O 1) 0.29 0.000168 -0.12 0.17
41. D(C 8,C 2,C 0,H 9) 0.07 -0.000139 -0.02 0.05
42. D(C 4,C 3,C 2,C 8) -0.05 -0.000017 0.04 -0.01
43. D(H 10,C 3,C 2,C 0) -0.04 -0.000017 0.03 -0.01
44. D(C 4,C 3,C 2,C 0) 179.95 -0.000020 0.04 179.99
45. D(H 10,C 3,C 2,C 8) 179.96 -0.000014 0.04 180.00
46. D(H 11,C 4,C 3,H 10) 0.03 0.000003 -0.04 -0.01
47. D(C 5,C 4,C 3,H 10) -179.98 -0.000004 0.00 -179.98
48. D(H 11,C 4,C 3,C 2) -179.96 0.000006 -0.05 -180.01
49. D(C 5,C 4,C 3,C 2) 0.03 -0.000001 -0.01 0.02
50. D(C 7,C 5,C 4,C 3) 0.03 0.000018 -0.05 -0.02
51. D(O 6,C 5,C 4,C 3) -179.91 0.000014 -0.10 -180.01
52. D(O 6,C 5,C 4,H 11) 0.08 0.000007 -0.06 0.02
53. D(C 7,C 5,C 4,H 11) -179.98 0.000011 -0.01 -179.99
54. D(H 12,O 6,C 5,C 7) 179.02 -0.000178 0.91 179.93
55. D(H 12,O 6,C 5,C 4) -1.03 -0.000175 0.95 -0.08
56. D(H 13,C 7,C 5,O 6) -0.16 -0.000023 0.17 0.01
57. D(H 13,C 7,C 5,C 4) 179.90 -0.000026 0.12 180.02
58. D(C 8,C 7,C 5,O 6) 179.87 -0.000014 0.13 180.00
59. D(C 8,C 7,C 5,C 4) -0.07 -0.000017 0.07 0.00
60. D(H 14,C 8,C 7,H 13) 0.07 0.000019 -0.07 0.01
61. D(H 14,C 8,C 7,C 5) -179.96 0.000009 -0.02 -179.98
62. D(C 2,C 8,C 7,H 13) -179.92 0.000009 -0.08 -180.00
63. D(C 2,C 8,C 7,C 5) 0.05 -0.000001 -0.04 0.01
64. D(H 14,C 8,C 2,C 3) -179.98 0.000008 -0.04 -180.02
65. D(H 14,C 8,C 2,C 0) 0.02 0.000011 -0.03 -0.01
66. D(C 7,C 8,C 2,C 3) 0.01 0.000018 -0.02 -0.01
67. D(C 7,C 8,C 2,C 0) -179.99 0.000021 -0.02 -180.00
----------------------------------------------------------------------------
Geometry step timings:
Preparation and reading OPT file: 0.000 s ( 1.394 %)
Internal coordinates : 0.000 s ( 1.307 %)
B/P matrices and projection : 0.000 s (33.798 %)
Hessian update/contruction : 0.000 s (13.850 %)
Making the step : 0.000 s (29.878 %)
Converting the step to Cartesian: 0.000 s ( 2.613 %)
Storing new data : 0.000 s ( 1.655 %)
Checking convergence : 0.000 s ( 1.829 %)
Final printing : 0.000 s (13.589 %)
Total time : 0.001 s
Time for energy+gradient : 4.184 s
Time for complete geometry iter : 4.692 s
*************************************************************
* GEOMETRY OPTIMIZATION CYCLE 9 *
*************************************************************
---------------------------------
CARTESIAN COORDINATES (ANGSTROEM)
---------------------------------
C -2.621108 0.072675 -0.130831
O -3.329959 -0.921651 -0.100320
C -1.145070 0.062543 -0.059128
C -0.448482 -1.160833 0.050216
C 0.943183 -1.177981 0.118015
C 1.667103 0.037380 0.077757
O 3.019729 0.077836 0.140346
C 0.980006 1.265868 -0.031423
C -0.413441 1.269277 -0.098814
H -3.069640 1.110115 -0.217718
H -1.039360 -2.089295 0.079467
H 1.489380 -2.132461 0.203635
H 3.359671 -0.833793 0.214334
H 1.565541 2.195943 -0.061022
H -0.957553 2.224379 -0.184513
----------------------------
CARTESIAN COORDINATES (A.U.)
----------------------------
NO LB ZA FRAG MASS X Y Z
0 C 6.0000 0 12.011 -4.953176 0.137335 -0.247235
1 O 8.0000 0 15.999 -6.292710 -1.741668 -0.189577
2 C 6.0000 0 12.011 -2.163869 0.118189 -0.111735
3 C 6.0000 0 12.011 -0.847508 -2.193657 0.094894
4 C 6.0000 0 12.011 1.782358 -2.226062 0.223015
5 C 6.0000 0 12.011 3.150369 0.070637 0.146940
6 O 8.0000 0 15.999 5.706460 0.147089 0.265215
7 C 6.0000 0 12.011 1.851943 2.392143 -0.059381
8 C 6.0000 0 12.011 -0.781290 2.398586 -0.186732
9 H 1.0000 0 1.008 -5.800779 2.097813 -0.411428
10 H 1.0000 0 1.008 -1.964107 -3.948194 0.150171
11 H 1.0000 0 1.008 2.814520 -4.029768 0.384814
12 H 1.0000 0 1.008 6.348858 -1.575640 0.405032
13 H 1.0000 0 1.008 2.958443 4.149731 -0.115315
14 H 1.0000 0 1.008 -1.809513 4.203468 -0.348678
--------------------------------
INTERNAL COORDINATES (ANGSTROEM)
--------------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 1.221508742611 0.00000000 0.00000000
C 1 2 0 1.477813245739 124.94693860 0.00000000
C 3 1 2 1.412033756408 120.16070917 0.17321270
C 4 3 1 1.393421461590 120.47290185 179.98684076
C 5 4 3 1.415196985914 119.92960074 0.00000000
O 6 5 4 1.354676857751 122.35009658 179.98923736
C 6 5 4 1.411809403278 120.03489436 0.00000000
C 8 6 5 1.395079319361 119.47023227 0.00000000
H 1 2 3 1.133583695657 121.14965827 180.12562296
H 4 3 1 1.100923932934 117.90168519 0.00000000
H 5 4 3 1.103038494325 120.59564622 179.98916156
H 7 6 5 0.975757052609 108.87245699 359.91932564
H 8 6 5 1.099439629243 118.61990068 180.01855631
H 9 8 6 1.102552762333 119.92041084 180.02009924
---------------------------
INTERNAL COORDINATES (A.U.)
---------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 2.308316993725 0.00000000 0.00000000
C 1 2 0 2.792662311528 124.94693860 0.00000000
C 3 1 2 2.668357091463 120.16070917 0.17321270
C 4 3 1 2.633184951534 120.47290185 179.98684076
C 5 4 3 2.674334728928 119.92960074 0.00000000
O 6 5 4 2.559968261110 122.35009658 179.98923736
C 6 5 4 2.667933125490 120.03489436 0.00000000
C 8 6 5 2.636317848689 119.47023227 0.00000000
H 1 2 3 2.142162734670 121.14965827 180.12562296
H 4 3 1 2.080444727524 117.90168519 0.00000000
H 5 4 3 2.084440669447 120.59564622 179.98916156
H 7 6 5 1.843913602674 108.87245699 359.91932564
H 8 6 5 2.077639800049 118.61990068 180.01855631
H 9 8 6 2.083522769007 119.92041084 180.02009924
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
___
/ \ - P O W E R E D B Y -
/ \
| | | _ _ __ _____ __ __
| | | | | | | / \ | _ \ | | / |
\ \/ | | | | / \ | | | | | | / /
/ \ \ | |__| | / /\ \ | |_| | | |/ /
| | | | __ | / /__\ \ | / | \
| | | | | | | | __ | | \ | |\ \
\ / | | | | | | | | | |\ \ | | \ \
\___/ |_| |_| |__| |__| |_| \__\ |__| \__/
- O R C A' S B I G F R I E N D -
&
- I N T E G R A L F E E D E R -
v1 FN, 2020, v2 2021, v3 2022-2024
------------------------------------------------------------------------------
----------------------
SHARK INTEGRAL PACKAGE
----------------------
Number of atoms ... 15
Number of basis functions ... 156
Number of shells ... 72
Maximum angular momentum ... 2
Integral batch strategy ... SHARK/LIBINT Hybrid
RI-J (if used) integral strategy ... SPLIT-RIJ (Revised 2003 algorithm where possible)
Printlevel ... 1
Contraction scheme used ... SEGMENTED contraction
Prescreening option ... SCHWARTZ
Thresh ... 2.500e-11
Tcut ... 2.500e-12
Tpresel ... 2.500e-12
Coulomb Range Separation ... NOT USED
Exchange Range Separation ... NOT USED
Multipole approximations ... NOT USED
Finite Nucleus Model ... NOT USED
CABS basis ... NOT available
Auxiliary Coulomb fitting basis ... AVAILABLE
# of basis functions in Aux-J ... 507
# of shells in Aux-J ... 165
Maximum angular momentum in Aux-J ... 4
Auxiliary J/K fitting basis ... NOT available
Auxiliary Correlation fitting basis ... NOT available
Auxiliary 'external' fitting basis ... NOT available
Checking pre-screening integrals ... done ( 0.0 sec) Dimension = 72
=> SHARK Basis and OBASIS are compatible. Storing Pre-screening
Shell pair information
Shell pair cut-off parameter TPreSel ... 2.5e-12
Total number of shell pairs ... 2628
Shell pairs after pre-screening ... 2416
Total number of primitive shell pairs ... 9726
Primitive shell pairs kept ... 6526
la=0 lb=0: 715 shell pairs
la=1 lb=0: 867 shell pairs
la=1 lb=1: 280 shell pairs
la=2 lb=0: 315 shell pairs
la=2 lb=1: 198 shell pairs
la=2 lb=2: 41 shell pairs
Checking whether 4 symmetric matrices of dimension 156 fit in memory
:Max Core in MB = 4096.00
MB in use = 6.66
MB left = 4089.34
MB needed = 0.37
Data fit in memory = YES
Calculating RI/J V-Matrix + Cholesky decomp.... done ( 0.0 sec)
Calculating Nuclear repulsion ... done ( 0.0 sec) ENN= 396.017301686323 Eh
Diagonalization of the overlap matrix:
Smallest eigenvalue ... 2.831e-04
Time for diagonalization ... 0.002 sec
Threshold for overlap eigenvalues ... 1.000e-07
Number of eigenvalues below threshold ... 0
Time for construction of square roots ... 0.001 sec
Total time needed ... 0.004 sec
-------------------
DFT GRID GENERATION
-------------------
General Integration Accuracy IntAcc ... 4.388
Radial Grid Type RadialGrid ... OptM3 with GC (2021)
Angular Grid (max. ang.) AngularGrid ... 4 (Lebedev-302)
Angular grid pruning method GridPruning ... 4 (adaptive)
Weight generation scheme WeightScheme... mBecke (2022)
Basis function cutoff BFCut ... 1.0000e-11
Integration weight cutoff WCut ... 1.0000e-14
Partially contracted basis set ... off
Rotationally invariant grid construction ... off
Angular grids for H and He will be reduced by one unit
Total number of grid points ... 73597
Total number of batches ... 1157
Average number of points per batch ... 63
Average number of grid points per atom ... 4906
Grids setup in 0.3 sec
Initializing property integral containers ... done ( 0.0 sec)
SHARK setup successfully completed in 0.4 seconds
Maximum memory used throughout the entire STARTUP-calculation: 19.9 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
Occupation numbers will be reassigned to an Aufbau configuration
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
Finished Guess after 0.4 sec
Maximum memory used throughout the entire GUESS-calculation: 9.2 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
----------------------------------------D-I-I-S--------------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP DIISErr Damp Time(sec)
-------------------------------------------------------------------------------------------
*** Starting incremental Fock matrix formation ***
1 -419.9993920450677365 0.00e+00 1.47e-04 1.90e-03 3.88e-03 0.700 0.1
*** Initializing SOSCF ***
---------------------------------------S-O-S-C-F--------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP MaxGrad Time(sec)
--------------------------------------------------------------------------------------
2 -419.9994053026431970 -1.33e-05 4.24e-04 5.61e-03 2.81e-03 0.1
*** Restarting incremental Fock matrix formation ***
3 -419.9994375894343079 -3.23e-05 6.58e-05 4.76e-04 1.03e-04 0.1
4 -419.9994376513389511 -6.19e-08 4.10e-05 2.40e-04 1.34e-04 0.1
5 -419.9994378672002426 -2.16e-07 3.41e-05 2.37e-04 6.76e-05 0.1
6 -419.9994378801303014 -1.29e-08 2.54e-05 2.59e-04 7.40e-05 0.1
7 -419.9994379325249270 -5.24e-08 1.83e-05 1.20e-04 4.10e-05 0.1
8 -419.9994379594878069 -2.70e-08 8.50e-06 6.83e-05 1.86e-05 0.1
9 -419.9994379627677858 -3.28e-09 7.16e-06 4.30e-05 1.49e-05 0.1
**** Energy Check signals convergence ****
*****************************************************
* SUCCESS *
* SCF CONVERGED AFTER 9 CYCLES *
*****************************************************
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
----------------
TOTAL SCF ENERGY
----------------
Total Energy : -419.99943797054192 Eh -11428.76573 eV
Components:
Nuclear Repulsion : 396.01730168632292 Eh 10776.17863 eV
Electronic Energy : -816.01673965686484 Eh -22204.94436 eV
One Electron Energy: -1355.24430579796194 Eh -36878.07241 eV
Two Electron Energy: 539.22756614109710 Eh 14673.12804 eV
Virial components:
Potential Energy : -836.04008840851156 Eh -22749.80738 eV
Kinetic Energy : 416.04065043796959 Eh 11321.04165 eV
Virial Ratio : 2.00951538636526
DFT components:
N(Alpha) : 31.999990909488 electrons
N(Beta) : 31.999990909488 electrons
N(Total) : 63.999981818975 electrons
E(X) : -54.609577741396 Eh
E(C) : -2.145048968605 Eh
E(XC) : -56.754626710001 Eh
---------------
SCF CONVERGENCE
---------------
Last Energy change ... 3.2800e-09 Tolerance : 1.0000e-08
Last MAX-Density change ... 4.3044e-05 Tolerance : 1.0000e-07
Last RMS-Density change ... 7.1643e-06 Tolerance : 5.0000e-09
Last DIIS Error ... 2.8140e-03 Tolerance : 5.0000e-07
Last Orbital Gradient ... 1.4941e-05 Tolerance : 1.0000e-05
Last Orbital Rotation ... 3.5080e-05 Tolerance : 1.0000e-05
Total SCF time: 0 days 0 hours 0 min 1 sec
Finished LeanSCF after 1.1 sec
Maximum memory used throughout the entire LEANSCF-calculation: 9.4 MB
-------------------------------------------------------------------------------
DFT DISPERSION CORRECTION
DFTD4 V3.4.0
-------------------------------------------------------------------------------
------------------------- ----------------
Dispersion correction -0.015284600
------------------------- ----------------
------------------------- --------------------
FINAL SINGLE POINT ENERGY -420.014722570362
------------------------- --------------------
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
ORCA SCF GRADIENT CALCULATION
------------------------------------------------------------------------------
Nuc. rep. gradient (SHARK) ... done ( 0.0 sec)
HCore & Overlap gradient (SHARK) ... done ( 0.0 sec)
Split-RIJ-J gradient (SHARK) ... done ( 0.1 sec)
XC gradient ... done ( 0.3 sec)
Dispersion correction ... done ( 0.0 sec)
-------------------
DISPERSION GRADIENT
-------------------
1 C : -0.000381220 0.000026093 -0.000020017
2 O : -0.000333440 -0.000096564 -0.000009722
3 C : -0.000212660 0.000011239 -0.000010961
4 C : -0.000058792 -0.000269972 0.000013826
5 C : 0.000199338 -0.000261231 0.000025709
6 C : 0.000271810 0.000001318 0.000012994
7 O : 0.000380787 -0.000015769 0.000019335
8 C : 0.000178798 0.000270333 -0.000008164
9 C : -0.000053456 0.000315228 -0.000022206
10 H : -0.000111366 0.000012357 -0.000006132
11 H : -0.000043034 -0.000111978 0.000004875
12 H : 0.000053099 -0.000110153 0.000009371
13 H : 0.000078066 -0.000000400 0.000003795
14 H : 0.000058963 0.000102330 -0.000003504
15 H : -0.000026893 0.000127170 -0.000009200
Difference to translation invariance:
: 0.0000000000 0.0000000000 -0.0000000000
Difference to rotation invariance:
: 0.0000000000 0.0000000000 -0.0000000000
Norm of the Dispersion gradient ... 0.0010021265
RMS gradient ... 0.0001493882
MAX gradient ... 0.0003812199
------------------
CARTESIAN GRADIENT
------------------
1 C : -0.000570232 0.000046697 -0.000269541
2 O : 0.000360403 0.000130292 0.000092491
3 C : 0.000003869 -0.000386823 0.000097858
4 C : 0.000195888 0.000022986 0.000013460
5 C : 0.000153059 -0.000132543 -0.000017435
6 C : -0.000240890 0.000396568 -0.000017770
7 O : -0.000107993 -0.000350682 -0.000002450
8 C : 0.000107886 -0.000161839 0.000021692
9 C : 0.000059471 0.000213149 -0.000001905
10 H : 0.000211611 -0.000051301 0.000087811
11 H : -0.000240477 0.000091940 -0.000012750
12 H : 0.000089477 0.000056733 0.000008513
13 H : 0.000059803 0.000149469 0.000012653
14 H : 0.000055107 0.000006558 -0.000007606
15 H : -0.000136982 -0.000031205 -0.000005020
Difference to translation invariance:
: 0.0000000000 0.0000000000 -0.0000000000
Difference to rotation invariance:
: -0.0000459892 -0.0000567899 0.0001302841
Norm of the Cartesian gradient ... 0.0011892837
RMS gradient ... 0.0001772879
MAX gradient ... 0.0005702324
-------
TIMINGS
-------
Total SCF gradient time .... 0.549 sec
Densities .... 0.000 sec ( 0.1%)
One electron gradient .... 0.020 sec ( 3.7%)
RI-J Coulomb gradient .... 0.143 sec ( 26.0%)
XC gradient .... 0.349 sec ( 63.6%)
Maximum memory used throughout the entire SCFGRAD-calculation: 29.0 MB
------------------------------------------------------------------------------
ORCA GEOMETRY RELAXATION STEP
------------------------------------------------------------------------------
Reading the OPT-File .... done
Getting information on internals .... done
Copying old internal coords+grads .... done
Making the new internal coordinates .... (2022 redundants) done
Validating the new internal coordinates .... (2022 redundants) done
Calculating the B-matrix .... done
Calculating the G,G- and P matrices .... done
Transforming gradient to internals .... done
Projecting the internal gradient .... done
Number of atoms .... 15
Number of internal coordinates .... 67
Current Energy .... -420.014722570 Eh
Current gradient norm .... 0.001189284 Eh/bohr
Maximum allowed component of the step .... 0.300
Current trust radius .... 0.300
Updating the Hessian (BFGS) .... done
Forming the augmented Hessian .... done
Diagonalizing the augmented Hessian .... done
Last element of RFO vector .... 0.999991647
Lowest eigenvalues of augmented Hessian:
-0.000002670 0.009022244 0.016030086 0.025725136 0.026451264
Length of the computed step .... 0.004087230
The final length of the internal step .... 0.004087230
Converting the step to Cartesian space:
Initial RMS(Int)= 0.0004993346
Transforming coordinates:
Iter 0: RMS(Cart)= 0.0008625960 RMS(Int)= 1.0855450545
done
Storing new coordinates .... done
The predicted energy change is .... -0.000001335
Previously predicted energy change .... -0.000017436
Actually observed energy change .... -0.000019675
Ratio of predicted to observed change .... 1.128400788
New trust radius .... 0.450000000
.--------------------.
----------------------|Geometry convergence|-------------------------
Item value Tolerance Converged
---------------------------------------------------------------------
Energy change -0.0000196746 0.0000050000 NO
RMS gradient 0.0001080625 0.0001000000 NO
MAX gradient 0.0003145700 0.0003000000 NO
RMS step 0.0004993346 0.0020000000 YES
MAX step 0.0013817459 0.0040000000 YES
-------------------------------------------------------------------------
........................................................
Max(Bonds) 0.0002 Max(Angles) 0.08
Max(Dihed) 0.07 Max(Improp) 0.00
---------------------------------------------------------------------
The optimization has not yet converged - more geometry cycles are needed
---------------------------------------------------------------------------
Redundant Internal Coordinates
(Angstroem and degrees)
Definition Value dE/dq Step New-Value
----------------------------------------------------------------------------
1. B(O 1,C 0) 1.2215 -0.000315 0.0002 1.2217
2. B(C 2,C 0) 1.4778 0.000003 0.0001 1.4779
3. B(C 3,C 2) 1.4120 -0.000093 0.0001 1.4121
4. B(C 4,C 3) 1.3934 0.000071 -0.0000 1.3934
5. B(C 5,C 4) 1.4152 -0.000015 0.0001 1.4153
6. B(O 6,C 5) 1.3547 -0.000054 0.0000 1.3547
7. B(C 7,C 5) 1.4118 -0.000152 0.0001 1.4120
8. B(C 8,C 7) 1.3951 0.000045 0.0000 1.3951
9. B(C 8,C 2) 1.4118 0.000097 -0.0000 1.4117
10. B(H 9,C 0) 1.1336 -0.000136 0.0002 1.1338
11. B(H 10,C 3) 1.1009 0.000051 -0.0001 1.1009
12. B(H 11,C 4) 1.1030 -0.000004 0.0000 1.1031
13. B(H 12,O 6) 0.9758 -0.000116 0.0001 0.9758
14. B(H 13,C 7) 1.0994 0.000035 -0.0000 1.0994
15. B(H 14,C 8) 1.1026 0.000041 -0.0000 1.1025
16. A(O 1,C 0,C 2) 124.95 -0.000217 0.01 124.96
17. A(O 1,C 0,H 9) 121.15 0.000298 -0.08 121.07
18. A(C 2,C 0,H 9) 113.90 -0.000081 0.06 113.97
19. A(C 3,C 2,C 8) 119.15 0.000093 -0.02 119.13
20. A(C 0,C 2,C 8) 120.69 -0.000172 0.04 120.73
21. A(C 0,C 2,C 3) 120.16 0.000079 -0.02 120.14
22. A(C 4,C 3,H 10) 121.63 0.000276 -0.07 121.55
23. A(C 2,C 3,C 4) 120.47 -0.000022 -0.00 120.47
24. A(C 2,C 3,H 10) 117.90 -0.000254 0.07 117.98
25. A(C 3,C 4,C 5) 119.93 -0.000114 0.02 119.95
26. A(C 5,C 4,H 11) 119.47 -0.000051 0.02 119.50
27. A(C 3,C 4,H 11) 120.60 0.000166 -0.04 120.56
28. A(O 6,C 5,C 7) 117.62 0.000073 -0.01 117.60
29. A(C 4,C 5,C 7) 120.03 0.000181 -0.02 120.02
30. A(C 4,C 5,O 6) 122.35 -0.000254 0.03 122.38
31. A(C 5,O 6,H 12) 108.87 0.000198 -0.01 108.86
32. A(C 5,C 7,C 8) 119.47 -0.000055 -0.00 119.47
33. A(C 8,C 7,H 13) 121.91 0.000074 -0.01 121.90
34. A(C 5,C 7,H 13) 118.62 -0.000019 0.01 118.63
35. A(C 7,C 8,H 14) 119.92 0.000180 -0.05 119.87
36. A(C 2,C 8,C 7) 120.94 -0.000083 0.02 120.96
37. A(C 2,C 8,H 14) 119.14 -0.000097 0.03 119.16
38. D(C 3,C 2,C 0,H 9) -179.94 -0.000073 0.05 -179.90
39. D(C 8,C 2,C 0,O 1) -179.83 0.000078 -0.07 -179.90
40. D(C 3,C 2,C 0,O 1) 0.17 0.000082 -0.07 0.10
41. D(C 8,C 2,C 0,H 9) 0.05 -0.000078 0.05 0.10
42. D(C 4,C 3,C 2,C 8) -0.01 -0.000004 0.01 0.00
43. D(H 10,C 3,C 2,C 0) -0.01 -0.000006 0.01 0.00
44. D(C 4,C 3,C 2,C 0) 179.99 -0.000008 0.01 180.00
45. D(H 10,C 3,C 2,C 8) 180.00 -0.000002 0.01 180.00
46. D(H 11,C 4,C 3,H 10) -0.01 -0.000003 0.00 -0.01
47. D(C 5,C 4,C 3,H 10) -179.98 0.000002 -0.01 -179.99
48. D(H 11,C 4,C 3,C 2) 179.99 -0.000001 0.00 179.99
49. D(C 5,C 4,C 3,C 2) 0.02 0.000005 -0.01 0.01
50. D(C 7,C 5,C 4,C 3) -0.02 -0.000004 0.00 -0.02
51. D(O 6,C 5,C 4,C 3) 179.99 -0.000002 -0.00 179.99
52. D(O 6,C 5,C 4,H 11) 0.02 0.000004 -0.01 0.01
53. D(C 7,C 5,C 4,H 11) -179.99 0.000001 -0.01 -180.00
54. D(H 12,O 6,C 5,C 7) 179.93 -0.000013 0.05 179.98
55. D(H 12,O 6,C 5,C 4) -0.08 -0.000016 0.06 -0.02
56. D(H 13,C 7,C 5,O 6) 0.01 0.000004 0.01 0.02
57. D(H 13,C 7,C 5,C 4) -179.98 0.000006 0.00 -179.98
58. D(C 8,C 7,C 5,O 6) 179.99 0.000001 0.01 180.00
59. D(C 8,C 7,C 5,C 4) 0.00 0.000003 0.00 0.01
60. D(H 14,C 8,C 7,H 13) 0.00 -0.000002 -0.00 0.00
61. D(H 14,C 8,C 7,C 5) -179.98 0.000001 -0.00 -179.98
62. D(C 2,C 8,C 7,H 13) 180.00 -0.000005 -0.00 179.99
63. D(C 2,C 8,C 7,C 5) 0.01 -0.000002 -0.00 0.01
64. D(H 14,C 8,C 2,C 3) 179.98 -0.000001 -0.00 179.98
65. D(H 14,C 8,C 2,C 0) -0.01 0.000004 -0.01 -0.02
66. D(C 7,C 8,C 2,C 3) -0.01 0.000002 -0.00 -0.01
67. D(C 7,C 8,C 2,C 0) 180.00 0.000007 -0.01 179.99
----------------------------------------------------------------------------
Geometry step timings:
Preparation and reading OPT file: 0.000 s ( 1.104 %)
Internal coordinates : 0.000 s ( 1.165 %)
B/P matrices and projection : 0.001 s (33.231 %)
Hessian update/contruction : 0.000 s (12.569 %)
Making the step : 0.000 s (28.755 %)
Converting the step to Cartesian: 0.000 s ( 2.636 %)
Storing new data : 0.000 s ( 1.594 %)
Checking convergence : 0.000 s ( 2.146 %)
Final printing : 0.000 s (16.616 %)
Total time : 0.002 s
Time for energy+gradient : 3.969 s
Time for complete geometry iter : 4.485 s
*************************************************************
* GEOMETRY OPTIMIZATION CYCLE 10 *
*************************************************************
---------------------------------
CARTESIAN COORDINATES (ANGSTROEM)
---------------------------------
C -2.621339 0.072628 -0.130374
O -3.330169 -0.921937 -0.100937
C -1.145230 0.062946 -0.058953
C -0.448692 -1.160588 0.050360
C 0.942964 -1.177852 0.118188
C 1.667397 0.037282 0.077861
O 3.020023 0.077965 0.140512
C 0.980336 1.265946 -0.031399
C -0.413158 1.269370 -0.098697
H -3.071397 1.109548 -0.218131
H -1.038427 -2.089702 0.079654
H 1.488451 -2.132780 0.203740
H 3.359969 -0.833811 0.213690
H 1.565730 2.196055 -0.061133
H -0.956459 2.224930 -0.184381
----------------------------
CARTESIAN COORDINATES (A.U.)
----------------------------
NO LB ZA FRAG MASS X Y Z
0 C 6.0000 0 12.011 -4.953613 0.137248 -0.246371
1 O 8.0000 0 15.999 -6.293108 -1.742208 -0.190742
2 C 6.0000 0 12.011 -2.164170 0.118951 -0.111405
3 C 6.0000 0 12.011 -0.847905 -2.193193 0.095167
4 C 6.0000 0 12.011 1.781944 -2.225818 0.223343
5 C 6.0000 0 12.011 3.150923 0.070452 0.147135
6 O 8.0000 0 15.999 5.707016 0.147333 0.265530
7 C 6.0000 0 12.011 1.852566 2.392292 -0.059336
8 C 6.0000 0 12.011 -0.780755 2.398762 -0.186510
9 H 1.0000 0 1.008 -5.804099 2.096742 -0.412208
10 H 1.0000 0 1.008 -1.962343 -3.948965 0.150524
11 H 1.0000 0 1.008 2.812764 -4.030370 0.385012
12 H 1.0000 0 1.008 6.349421 -1.575675 0.403816
13 H 1.0000 0 1.008 2.958801 4.149943 -0.115525
14 H 1.0000 0 1.008 -1.807445 4.204508 -0.348429
--------------------------------
INTERNAL COORDINATES (ANGSTROEM)
--------------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 1.221665556285 0.00000000 0.00000000
C 1 2 0 1.477868011460 124.96164250 0.00000000
C 3 1 2 1.412143326601 120.13763224 0.10002008
C 4 3 1 1.393414801143 120.47280036 179.99947034
C 5 4 3 1.415266647968 119.94701796 0.00000000
O 6 5 4 1.354687308647 122.38179074 179.98619061
C 6 5 4 1.411951563234 120.01737723 0.00000000
C 8 6 5 1.395121731930 119.46580844 0.00000000
H 1 2 3 1.133779702399 121.07116742 179.99816376
H 4 3 1 1.100863303062 117.97509715 0.00000000
H 5 4 3 1.103069096183 120.55694939 179.99116615
H 7 6 5 0.975835303066 108.85910776 0.00000000
H 8 6 5 1.099396358832 118.63230793 180.02104200
H 9 8 6 1.102547773558 119.87234778 180.01667033
---------------------------
INTERNAL COORDINATES (A.U.)
---------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 2.308613328623 0.00000000 0.00000000
C 1 2 0 2.792765803742 124.96164250 0.00000000
C 3 1 2 2.668564149120 120.13763224 0.10002008
C 4 3 1 2.633172365113 120.47280036 179.99947034
C 5 4 3 2.674466371132 119.94701796 0.00000000
O 6 5 4 2.559988010442 122.38179074 179.98619061
C 6 5 4 2.668201768874 120.01737723 0.00000000
C 8 6 5 2.636397996830 119.46580844 0.00000000
H 1 2 3 2.142533133733 121.07116742 179.99816376
H 4 3 1 2.080330153671 117.97509715 0.00000000
H 5 4 3 2.084498498578 120.55694939 179.99116615
H 7 6 5 1.844061474606 108.85910776 0.00000000
H 8 6 5 2.077558030822 118.63230793 180.02104200
H 9 8 6 2.083513341590 119.87234778 180.01667033
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
___
/ \ - P O W E R E D B Y -
/ \
| | | _ _ __ _____ __ __
| | | | | | | / \ | _ \ | | / |
\ \/ | | | | / \ | | | | | | / /
/ \ \ | |__| | / /\ \ | |_| | | |/ /
| | | | __ | / /__\ \ | / | \
| | | | | | | | __ | | \ | |\ \
\ / | | | | | | | | | |\ \ | | \ \
\___/ |_| |_| |__| |__| |_| \__\ |__| \__/
- O R C A' S B I G F R I E N D -
&
- I N T E G R A L F E E D E R -
v1 FN, 2020, v2 2021, v3 2022-2024
------------------------------------------------------------------------------
----------------------
SHARK INTEGRAL PACKAGE
----------------------
Number of atoms ... 15
Number of basis functions ... 156
Number of shells ... 72
Maximum angular momentum ... 2
Integral batch strategy ... SHARK/LIBINT Hybrid
RI-J (if used) integral strategy ... SPLIT-RIJ (Revised 2003 algorithm where possible)
Printlevel ... 1
Contraction scheme used ... SEGMENTED contraction
Prescreening option ... SCHWARTZ
Thresh ... 2.500e-11
Tcut ... 2.500e-12
Tpresel ... 2.500e-12
Coulomb Range Separation ... NOT USED
Exchange Range Separation ... NOT USED
Multipole approximations ... NOT USED
Finite Nucleus Model ... NOT USED
CABS basis ... NOT available
Auxiliary Coulomb fitting basis ... AVAILABLE
# of basis functions in Aux-J ... 507
# of shells in Aux-J ... 165
Maximum angular momentum in Aux-J ... 4
Auxiliary J/K fitting basis ... NOT available
Auxiliary Correlation fitting basis ... NOT available
Auxiliary 'external' fitting basis ... NOT available
Checking pre-screening integrals ... done ( 0.0 sec) Dimension = 72
=> SHARK Basis and OBASIS are compatible. Storing Pre-screening
Shell pair information
Shell pair cut-off parameter TPreSel ... 2.5e-12
Total number of shell pairs ... 2628
Shell pairs after pre-screening ... 2416
Total number of primitive shell pairs ... 9726
Primitive shell pairs kept ... 6526
la=0 lb=0: 715 shell pairs
la=1 lb=0: 867 shell pairs
la=1 lb=1: 280 shell pairs
la=2 lb=0: 315 shell pairs
la=2 lb=1: 198 shell pairs
la=2 lb=2: 41 shell pairs
Checking whether 4 symmetric matrices of dimension 156 fit in memory
:Max Core in MB = 4096.00
MB in use = 6.66
MB left = 4089.34
MB needed = 0.37
Data fit in memory = YES
Calculating RI/J V-Matrix + Cholesky decomp.... done ( 0.0 sec)
Calculating Nuclear repulsion ... done ( 0.0 sec) ENN= 395.991943401418 Eh
Diagonalization of the overlap matrix:
Smallest eigenvalue ... 2.831e-04
Time for diagonalization ... 0.002 sec
Threshold for overlap eigenvalues ... 1.000e-07
Number of eigenvalues below threshold ... 0
Time for construction of square roots ... 0.001 sec
Total time needed ... 0.003 sec
-------------------
DFT GRID GENERATION
-------------------
General Integration Accuracy IntAcc ... 4.388
Radial Grid Type RadialGrid ... OptM3 with GC (2021)
Angular Grid (max. ang.) AngularGrid ... 4 (Lebedev-302)
Angular grid pruning method GridPruning ... 4 (adaptive)
Weight generation scheme WeightScheme... mBecke (2022)
Basis function cutoff BFCut ... 1.0000e-11
Integration weight cutoff WCut ... 1.0000e-14
Partially contracted basis set ... off
Rotationally invariant grid construction ... off
Angular grids for H and He will be reduced by one unit
Total number of grid points ... 73597
Total number of batches ... 1157
Average number of points per batch ... 63
Average number of grid points per atom ... 4906
Grids setup in 0.3 sec
Initializing property integral containers ... done ( 0.0 sec)
SHARK setup successfully completed in 0.4 seconds
Maximum memory used throughout the entire STARTUP-calculation: 19.9 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
Occupation numbers will be reassigned to an Aufbau configuration
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
Finished Guess after 0.4 sec
Maximum memory used throughout the entire GUESS-calculation: 9.2 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
----------------------------------------D-I-I-S--------------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP DIISErr Damp Time(sec)
-------------------------------------------------------------------------------------------
*** Starting incremental Fock matrix formation ***
*** Initializing SOSCF ***
---------------------------------------S-O-S-C-F--------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP MaxGrad Time(sec)
--------------------------------------------------------------------------------------
1 -419.9994399127529618 0.00e+00 9.07e-05 5.85e-04 4.17e-05 0.1
*** Restarting incremental Fock matrix formation ***
2 -419.9994408899128189 -9.77e-07 3.39e-05 2.67e-04 3.81e-05 0.1
3 -419.9994408196179734 7.03e-08 2.89e-05 3.76e-04 1.29e-04 0.1
4 -419.9994409572577183 -1.38e-07 1.65e-05 1.04e-04 2.71e-05 0.1
5 -419.9994409560155759 1.24e-09 7.80e-06 5.89e-05 2.42e-05 0.1
**** Energy Check signals convergence ****
*****************************************************
* SUCCESS *
* SCF CONVERGED AFTER 5 CYCLES *
*****************************************************
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
----------------
TOTAL SCF ENERGY
----------------
Total Energy : -419.99944097193799 Eh -11428.76582 eV
Components:
Nuclear Repulsion : 395.99194340141781 Eh 10775.48860 eV
Electronic Energy : -815.99138437335580 Eh -22204.25441 eV
One Electron Energy: -1355.19410045189375 Eh -36876.70625 eV
Two Electron Energy: 539.20271607853795 Eh 14672.45184 eV
Virial components:
Potential Energy : -836.03826931043113 Eh -22749.75788 eV
Kinetic Energy : 416.03882833849315 Eh 11320.99207 eV
Virial Ratio : 2.00951981489147
DFT components:
N(Alpha) : 31.999991179621 electrons
N(Beta) : 31.999991179621 electrons
N(Total) : 63.999982359242 electrons
E(X) : -54.609167173518 Eh
E(C) : -2.145015623927 Eh
E(XC) : -56.754182797444 Eh
---------------
SCF CONVERGENCE
---------------
Last Energy change ... -1.2421e-09 Tolerance : 1.0000e-08
Last MAX-Density change ... 5.8853e-05 Tolerance : 1.0000e-07
Last RMS-Density change ... 7.8032e-06 Tolerance : 5.0000e-09
Last DIIS Error ... 3.8611e-04 Tolerance : 5.0000e-07
Last Orbital Gradient ... 2.4247e-05 Tolerance : 1.0000e-05
Last Orbital Rotation ... 3.9858e-05 Tolerance : 1.0000e-05
Total SCF time: 0 days 0 hours 0 min 0 sec
Finished LeanSCF after 0.9 sec
Maximum memory used throughout the entire LEANSCF-calculation: 9.5 MB
-------------------------------------------------------------------------------
DFT DISPERSION CORRECTION
DFTD4 V3.4.0
-------------------------------------------------------------------------------
------------------------- ----------------
Dispersion correction -0.015283378
------------------------- ----------------
------------------------- --------------------
FINAL SINGLE POINT ENERGY -420.014724349484
------------------------- --------------------
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
ORCA SCF GRADIENT CALCULATION
------------------------------------------------------------------------------
Nuc. rep. gradient (SHARK) ... done ( 0.0 sec)
HCore & Overlap gradient (SHARK) ... done ( 0.0 sec)
Split-RIJ-J gradient (SHARK) ... done ( 0.1 sec)
XC gradient ... done ( 0.4 sec)
Dispersion correction ... done ( 0.0 sec)
-------------------
DISPERSION GRADIENT
-------------------
1 C : -0.000381279 0.000026068 -0.000019960
2 O : -0.000333416 -0.000096508 -0.000009821
3 C : -0.000212670 0.000011297 -0.000010936
4 C : -0.000058817 -0.000269903 0.000013858
5 C : 0.000199231 -0.000261235 0.000025723
6 C : 0.000271823 0.000001309 0.000012989
7 O : 0.000380787 -0.000015768 0.000019319
8 C : 0.000178751 0.000270329 -0.000008184
9 C : -0.000053339 0.000315216 -0.000022182
10 H : -0.000111340 0.000012292 -0.000006142
11 H : -0.000042946 -0.000112026 0.000004883
12 H : 0.000053042 -0.000110203 0.000009377
13 H : 0.000078067 -0.000000382 0.000003788
14 H : 0.000058953 0.000102319 -0.000003515
15 H : -0.000026845 0.000127196 -0.000009197
Difference to translation invariance:
: 0.0000000000 0.0000000000 -0.0000000000
Difference to rotation invariance:
: -0.0000000000 0.0000000000 0.0000000000
Norm of the Dispersion gradient ... 0.0010020850
RMS gradient ... 0.0001493820
MAX gradient ... 0.0003812792
------------------
CARTESIAN GRADIENT
------------------
1 C : -0.000253491 0.000054812 0.000001817
2 O : 0.000133540 0.000033963 -0.000015647
3 C : 0.000055229 -0.000208269 0.000020649
4 C : 0.000091425 -0.000043325 0.000009968
5 C : 0.000045093 -0.000131699 -0.000000950
6 C : -0.000125056 0.000251249 -0.000015968
7 O : -0.000088139 -0.000194096 0.000009413
8 C : 0.000139029 0.000024025 0.000012170
9 C : 0.000030942 0.000087498 -0.000005475
10 H : 0.000016570 -0.000011247 -0.000002053
11 H : -0.000116647 0.000043559 -0.000008238
12 H : 0.000052094 0.000013914 0.000005203
13 H : 0.000058819 0.000086144 0.000002214
14 H : 0.000033294 -0.000004867 -0.000008405
15 H : -0.000072703 -0.000001661 -0.000004697
Difference to translation invariance:
: 0.0000000000 -0.0000000000 0.0000000000
Difference to rotation invariance:
: -0.0000142428 -0.0000705749 0.0001336915
Norm of the Cartesian gradient ... 0.0005938196
RMS gradient ... 0.0000885214
MAX gradient ... 0.0002534915
-------
TIMINGS
-------
Total SCF gradient time .... 0.583 sec
Densities .... 0.000 sec ( 0.1%)
One electron gradient .... 0.020 sec ( 3.5%)
RI-J Coulomb gradient .... 0.142 sec ( 24.3%)
XC gradient .... 0.387 sec ( 66.4%)
Maximum memory used throughout the entire SCFGRAD-calculation: 29.0 MB
------------------------------------------------------------------------------
ORCA GEOMETRY RELAXATION STEP
------------------------------------------------------------------------------
Reading the OPT-File .... done
Getting information on internals .... done
Copying old internal coords+grads .... done
Making the new internal coordinates .... (2022 redundants) done
Validating the new internal coordinates .... (2022 redundants) done
Calculating the B-matrix .... done
Calculating the G,G- and P matrices .... done
Transforming gradient to internals .... done
Projecting the internal gradient .... done
Number of atoms .... 15
Number of internal coordinates .... 67
Current Energy .... -420.014724349 Eh
Current gradient norm .... 0.000593820 Eh/bohr
Maximum allowed component of the step .... 0.300
Current trust radius .... 0.450
Updating the Hessian (BFGS) .... done
Forming the augmented Hessian .... done
Diagonalizing the augmented Hessian .... done
Last element of RFO vector .... 0.999996248
Lowest eigenvalues of augmented Hessian:
-0.000000903 0.008980348 0.016106470 0.025695319 0.026451042
Length of the computed step .... 0.002739486
The final length of the internal step .... 0.002739486
Converting the step to Cartesian space:
Initial RMS(Int)= 0.0003346815
Transforming coordinates:
Iter 0: RMS(Cart)= 0.0005196949 RMS(Int)= 1.5351495490
done
Storing new coordinates .... done
The predicted energy change is .... -0.000000452
Previously predicted energy change .... -0.000001335
Actually observed energy change .... -0.000001779
Ratio of predicted to observed change .... 1.332840165
New trust radius .... 0.450000000
.--------------------.
----------------------|Geometry convergence|-------------------------
Item value Tolerance Converged
---------------------------------------------------------------------
Energy change -0.0000017791 0.0000050000 YES
RMS gradient 0.0000566800 0.0001000000 YES
MAX gradient 0.0001545641 0.0003000000 YES
RMS step 0.0003346815 0.0020000000 YES
MAX step 0.0008589960 0.0040000000 YES
-------------------------------------------------------------------------
........................................................
Max(Bonds) 0.0001 Max(Angles) 0.05
Max(Dihed) 0.05 Max(Improp) 0.00
---------------------------------------------------------------------
***********************HURRAY********************
*** THE OPTIMIZATION HAS CONVERGED ***
*************************************************
---------------------------------------------------------------------------
Redundant Internal Coordinates
--- Optimized Parameters ---
(Angstroem and degrees)
Definition OldVal dE/dq Step FinalVal
----------------------------------------------------------------------------
1. B(O 1,C 0) 1.2217 -0.000107 0.0001 1.2217
2. B(C 2,C 0) 1.4779 0.000104 -0.0001 1.4777
3. B(C 3,C 2) 1.4121 -0.000003 0.0000 1.4122
4. B(C 4,C 3) 1.3934 0.000039 -0.0000 1.3934
5. B(C 5,C 4) 1.4153 0.000082 -0.0001 1.4152
6. B(O 6,C 5) 1.3547 -0.000033 0.0000 1.3547
7. B(C 7,C 5) 1.4120 -0.000056 0.0001 1.4121
8. B(C 8,C 7) 1.3951 0.000075 -0.0001 1.3951
9. B(C 8,C 2) 1.4117 0.000115 -0.0001 1.4116
10. B(H 9,C 0) 1.1338 -0.000015 0.0001 1.1339
11. B(H 10,C 3) 1.1009 0.000026 -0.0000 1.1008
12. B(H 11,C 4) 1.1031 0.000014 0.0000 1.1031
13. B(H 12,O 6) 0.9758 -0.000058 0.0001 0.9759
14. B(H 13,C 7) 1.0994 0.000014 -0.0000 1.0994
15. B(H 14,C 8) 1.1025 0.000035 -0.0000 1.1025
16. A(O 1,C 0,C 2) 124.96 -0.000123 0.03 124.99
17. A(O 1,C 0,H 9) 121.07 0.000075 -0.03 121.04
18. A(C 2,C 0,H 9) 113.97 0.000048 0.01 113.98
19. A(C 3,C 2,C 8) 119.13 0.000054 -0.01 119.12
20. A(C 0,C 2,C 8) 120.73 -0.000059 0.02 120.75
21. A(C 0,C 2,C 3) 120.14 0.000005 -0.01 120.13
22. A(C 4,C 3,H 10) 121.55 0.000142 -0.05 121.50
23. A(C 2,C 3,C 4) 120.47 -0.000026 0.00 120.48
24. A(C 2,C 3,H 10) 117.98 -0.000116 0.04 118.02
25. A(C 3,C 4,C 5) 119.95 -0.000061 0.02 119.96
26. A(C 5,C 4,H 11) 119.50 -0.000022 0.01 119.51
27. A(C 3,C 4,H 11) 120.56 0.000083 -0.03 120.53
28. A(O 6,C 5,C 7) 117.60 0.000001 -0.01 117.60
29. A(C 4,C 5,C 7) 120.02 0.000132 -0.03 119.99
30. A(C 4,C 5,O 6) 122.38 -0.000133 0.03 122.42
31. A(C 5,O 6,H 12) 108.86 0.000155 -0.04 108.82
32. A(C 5,C 7,C 8) 119.47 -0.000082 0.01 119.48
33. A(C 8,C 7,H 13) 121.90 0.000075 -0.02 121.89
34. A(C 5,C 7,H 13) 118.63 0.000008 0.00 118.64
35. A(C 7,C 8,H 14) 119.87 0.000073 -0.03 119.84
36. A(C 2,C 8,C 7) 120.96 -0.000016 0.01 120.97
37. A(C 2,C 8,H 14) 119.16 -0.000057 0.02 119.18
38. D(C 3,C 2,C 0,H 9) -179.90 0.000004 0.03 -179.87
39. D(C 8,C 2,C 0,O 1) -179.90 -0.000019 0.04 -179.86
40. D(C 3,C 2,C 0,O 1) 0.10 -0.000014 0.02 0.12
41. D(C 8,C 2,C 0,H 9) 0.10 -0.000001 0.05 0.15
42. D(C 4,C 3,C 2,C 8) 0.00 0.000001 -0.00 0.00
43. D(H 10,C 3,C 2,C 0) 0.00 -0.000004 0.02 0.02
44. D(C 4,C 3,C 2,C 0) 180.00 -0.000004 0.02 180.02
45. D(H 10,C 3,C 2,C 8) -180.00 0.000001 -0.00 -180.00
46. D(H 11,C 4,C 3,H 10) -0.01 -0.000002 0.01 -0.01
47. D(C 5,C 4,C 3,H 10) -179.99 -0.000000 0.00 -179.99
48. D(H 11,C 4,C 3,C 2) 179.99 -0.000002 0.01 180.00
49. D(C 5,C 4,C 3,C 2) 0.01 -0.000000 -0.00 0.01
50. D(C 7,C 5,C 4,C 3) -0.02 -0.000002 0.00 -0.01
51. D(O 6,C 5,C 4,C 3) 179.99 -0.000000 0.00 179.99
52. D(O 6,C 5,C 4,H 11) 0.01 0.000001 -0.01 0.00
53. D(C 7,C 5,C 4,H 11) -180.00 -0.000000 -0.00 -180.00
54. D(H 12,O 6,C 5,C 7) 179.98 -0.000001 0.04 180.02
55. D(H 12,O 6,C 5,C 4) -0.02 -0.000003 0.04 0.02
56. D(H 13,C 7,C 5,O 6) 0.02 0.000005 -0.01 0.01
57. D(H 13,C 7,C 5,C 4) -179.98 0.000007 -0.02 -179.99
58. D(C 8,C 7,C 5,O 6) -180.00 0.000002 -0.00 -180.00
59. D(C 8,C 7,C 5,C 4) 0.01 0.000003 -0.01 0.00
60. D(H 14,C 8,C 7,H 13) 0.00 -0.000002 0.00 0.01
61. D(H 14,C 8,C 7,C 5) -179.98 0.000001 -0.01 -179.99
62. D(C 2,C 8,C 7,H 13) 179.99 -0.000006 0.02 180.01
63. D(C 2,C 8,C 7,C 5) 0.01 -0.000002 0.01 0.01
64. D(H 14,C 8,C 2,C 3) 179.98 -0.000003 0.01 179.99
65. D(H 14,C 8,C 2,C 0) -0.02 0.000002 -0.01 -0.03
66. D(C 7,C 8,C 2,C 3) -0.01 0.000001 -0.00 -0.02
67. D(C 7,C 8,C 2,C 0) 179.99 0.000005 -0.02 179.97
----------------------------------------------------------------------------
Geometry step timings:
Preparation and reading OPT file: 0.000 s ( 0.469 %)
Internal coordinates : 0.000 s ( 0.438 %)
B/P matrices and projection : 0.000 s (10.923 %)
Hessian update/contruction : 0.002 s (68.920 %)
Making the step : 0.000 s (11.330 %)
Converting the step to Cartesian: 0.000 s ( 1.221 %)
Storing new data : 0.000 s ( 0.720 %)
Checking convergence : 0.000 s ( 0.595 %)
Final printing : 0.000 s ( 5.321 %)
Total time : 0.003 s
*******************************************************
*** FINAL ENERGY EVALUATION AT THE STATIONARY POINT ***
*** (AFTER 10 CYCLES) ***
*******************************************************
---------------------------------
CARTESIAN COORDINATES (ANGSTROEM)
---------------------------------
C -2.621354 0.072548 -0.130339
O -3.330573 -0.921822 -0.100239
C -1.145361 0.063104 -0.059157
C -0.448733 -1.160426 0.050246
C 0.942877 -1.177710 0.118213
C 1.667649 0.037161 0.077968
O 3.020274 0.078227 0.140731
C 0.980321 1.265797 -0.031320
C -0.413100 1.269294 -0.098814
H -3.071741 1.109373 -0.218711
H -1.037662 -2.089994 0.079569
H 1.487884 -2.132916 0.203743
H 3.359902 -0.833798 0.213294
H 1.565475 2.196039 -0.060772
H -0.955859 2.225123 -0.184410
----------------------------
CARTESIAN COORDINATES (A.U.)
----------------------------
NO LB ZA FRAG MASS X Y Z
0 C 6.0000 0 12.011 -4.953641 0.137095 -0.246304
1 O 8.0000 0 15.999 -6.293871 -1.741991 -0.189425
2 C 6.0000 0 12.011 -2.164419 0.119249 -0.111790
3 C 6.0000 0 12.011 -0.847983 -2.192888 0.094950
4 C 6.0000 0 12.011 1.781779 -2.225548 0.223389
5 C 6.0000 0 12.011 3.151400 0.070224 0.147338
6 O 8.0000 0 15.999 5.707491 0.147827 0.265943
7 C 6.0000 0 12.011 1.852538 2.392010 -0.059185
8 C 6.0000 0 12.011 -0.780646 2.398619 -0.186732
9 H 1.0000 0 1.008 -5.804749 2.096412 -0.413305
10 H 1.0000 0 1.008 -1.960896 -3.949516 0.150363
11 H 1.0000 0 1.008 2.811693 -4.030627 0.385018
12 H 1.0000 0 1.008 6.349295 -1.575651 0.403068
13 H 1.0000 0 1.008 2.958319 4.149913 -0.114843
14 H 1.0000 0 1.008 -1.806311 4.204873 -0.348484
--------------------------------
INTERNAL COORDINATES (ANGSTROEM)
--------------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 1.221748027378 0.00000000 0.00000000
C 1 2 0 1.477738338919 124.98918127 0.00000000
C 3 1 2 1.412191469846 120.13118071 0.12476046
C 4 3 1 1.393376160180 120.47724098 180.01587855
C 5 4 3 1.415211861965 119.96332724 0.00000000
O 6 5 4 1.354703326761 122.41508463 179.98619375
C 6 5 4 1.412059089533 119.98989197 0.00000000
C 8 6 5 1.395059252442 119.47935685 0.00000000
H 1 2 3 1.133872035143 121.03566558 179.99442949
H 4 3 1 1.100814289839 118.01987040 0.00000000
H 5 4 3 1.103071941749 120.52925909 179.99611879
H 7 6 5 0.975911113067 108.81980216 0.00000000
H 8 6 5 1.099373892063 118.63545317 180.00560575
H 9 8 6 1.102507113694 119.84438962 180.01109721
---------------------------
INTERNAL COORDINATES (A.U.)
---------------------------
C 0 0 0 0.000000000000 0.00000000 0.00000000
O 1 0 0 2.308769176404 0.00000000 0.00000000
C 1 2 0 2.792520758153 124.98918127 0.00000000
C 3 1 2 2.668655126669 120.13118071 0.12476046
C 4 3 1 2.633099344274 120.47724098 180.01587855
C 5 4 3 2.674362840591 119.96332724 0.00000000
O 6 5 4 2.560018280291 122.41508463 179.98619375
C 6 5 4 2.668404964132 119.98989197 0.00000000
C 8 6 5 2.636279927708 119.47935685 0.00000000
H 1 2 3 2.142707617333 121.03566558 179.99442949
H 4 3 1 2.080237532103 118.01987040 0.00000000
H 5 4 3 2.084503875918 120.52925909 179.99611879
H 7 6 5 1.844204734747 108.81980216 0.00000000
H 8 6 5 2.077515574781 118.63545317 180.00560575
H 9 8 6 2.083436505582 119.84438962 180.01109721
---------------------
BASIS SET INFORMATION
---------------------
There are 3 groups of distinct atoms
Group 1 Type C : 7s4p1d contracted to 3s2p1d pattern {511/31/1}
Group 2 Type O : 7s4p1d contracted to 3s2p1d pattern {511/31/1}
Group 3 Type H : 4s1p contracted to 2s1p pattern {31/1}
Atom 0C basis set group => 1
Atom 1O basis set group => 2
Atom 2C basis set group => 1
Atom 3C basis set group => 1
Atom 4C basis set group => 1
Atom 5C basis set group => 1
Atom 6O basis set group => 2
Atom 7C basis set group => 1
Atom 8C basis set group => 1
Atom 9H basis set group => 3
Atom 10H basis set group => 3
Atom 11H basis set group => 3
Atom 12H basis set group => 3
Atom 13H basis set group => 3
Atom 14H basis set group => 3
---------------------------------
AUXILIARY/J BASIS SET INFORMATION
---------------------------------
There are 3 groups of distinct atoms
Group 1 Type C : 12s5p4d2f1g contracted to 6s4p3d1f1g pattern {711111/2111/211/2/1}
Group 2 Type O : 12s5p4d2f1g contracted to 6s4p3d1f1g pattern {711111/2111/211/2/1}
Group 3 Type H : 5s2p1d contracted to 3s1p1d pattern {311/2/1}
Atom 0C basis set group => 1
Atom 1O basis set group => 2
Atom 2C basis set group => 1
Atom 3C basis set group => 1
Atom 4C basis set group => 1
Atom 5C basis set group => 1
Atom 6O basis set group => 2
Atom 7C basis set group => 1
Atom 8C basis set group => 1
Atom 9H basis set group => 3
Atom 10H basis set group => 3
Atom 11H basis set group => 3
Atom 12H basis set group => 3
Atom 13H basis set group => 3
Atom 14H basis set group => 3
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
ORCA STARTUP CALCULATIONS
-- RI-GTO INTEGRALS CHOSEN --
------------------------------------------------------------------------------
------------------------------------------------------------------------------
___
/ \ - P O W E R E D B Y -
/ \
| | | _ _ __ _____ __ __
| | | | | | | / \ | _ \ | | / |
\ \/ | | | | / \ | | | | | | / /
/ \ \ | |__| | / /\ \ | |_| | | |/ /
| | | | __ | / /__\ \ | / | \
| | | | | | | | __ | | \ | |\ \
\ / | | | | | | | | | |\ \ | | \ \
\___/ |_| |_| |__| |__| |_| \__\ |__| \__/
- O R C A' S B I G F R I E N D -
&
- I N T E G R A L F E E D E R -
v1 FN, 2020, v2 2021, v3 2022-2024
------------------------------------------------------------------------------
----------------------
SHARK INTEGRAL PACKAGE
----------------------
Number of atoms ... 15
Number of basis functions ... 156
Number of shells ... 72
Maximum angular momentum ... 2
Integral batch strategy ... SHARK/LIBINT Hybrid
RI-J (if used) integral strategy ... SPLIT-RIJ (Revised 2003 algorithm where possible)
Printlevel ... 1
Contraction scheme used ... SEGMENTED contraction
Prescreening option ... SCHWARTZ
Thresh ... 2.500e-11
Tcut ... 2.500e-12
Tpresel ... 2.500e-12
Coulomb Range Separation ... NOT USED
Exchange Range Separation ... NOT USED
Multipole approximations ... NOT USED
Finite Nucleus Model ... NOT USED
CABS basis ... NOT available
Auxiliary Coulomb fitting basis ... AVAILABLE
# of basis functions in Aux-J ... 507
# of shells in Aux-J ... 165
Maximum angular momentum in Aux-J ... 4
Auxiliary J/K fitting basis ... NOT available
Auxiliary Correlation fitting basis ... NOT available
Auxiliary 'external' fitting basis ... NOT available
Checking pre-screening integrals ... done ( 0.0 sec) Dimension = 72
=> SHARK Basis and OBASIS are compatible. Storing Pre-screening
Shell pair information
Shell pair cut-off parameter TPreSel ... 2.5e-12
Total number of shell pairs ... 2628
Shell pairs after pre-screening ... 2416
Total number of primitive shell pairs ... 9726
Primitive shell pairs kept ... 6527
la=0 lb=0: 715 shell pairs
la=1 lb=0: 867 shell pairs
la=1 lb=1: 280 shell pairs
la=2 lb=0: 315 shell pairs
la=2 lb=1: 198 shell pairs
la=2 lb=2: 41 shell pairs
Checking whether 4 symmetric matrices of dimension 156 fit in memory
:Max Core in MB = 4096.00
MB in use = 6.66
MB left = 4089.34
MB needed = 0.37
Data fit in memory = YES
Calculating RI/J V-Matrix + Cholesky decomp.... done ( 0.0 sec)
Calculating Nuclear repulsion ... done ( 0.0 sec) ENN= 395.985157874142 Eh
Diagonalization of the overlap matrix:
Smallest eigenvalue ... 2.830e-04
Time for diagonalization ... 0.002 sec
Threshold for overlap eigenvalues ... 1.000e-07
Number of eigenvalues below threshold ... 0
Time for construction of square roots ... 0.001 sec
Total time needed ... 0.003 sec
-------------------
DFT GRID GENERATION
-------------------
General Integration Accuracy IntAcc ... 4.388
Radial Grid Type RadialGrid ... OptM3 with GC (2021)
Angular Grid (max. ang.) AngularGrid ... 4 (Lebedev-302)
Angular grid pruning method GridPruning ... 4 (adaptive)
Weight generation scheme WeightScheme... mBecke (2022)
Basis function cutoff BFCut ... 1.0000e-11
Integration weight cutoff WCut ... 1.0000e-14
Partially contracted basis set ... off
Rotationally invariant grid construction ... off
Angular grids for H and He will be reduced by one unit
Total number of grid points ... 73596
Total number of batches ... 1157
Average number of points per batch ... 63
Average number of grid points per atom ... 4906
Grids setup in 0.4 sec
Initializing property integral containers ... done ( 0.0 sec)
SHARK setup successfully completed in 0.4 seconds
Maximum memory used throughout the entire STARTUP-calculation: 19.9 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
-------------------------------------------------------------------------------
ORCA GUESS
Start orbitals & Density for SCF / CASSCF
-------------------------------------------------------------------------------
------------
SCF SETTINGS
------------
Hamiltonian:
Density Functional Method .... DFT(GTOs)
Exchange Functional Exchange .... PBE
PBE kappa parameter XKappa .... 0.804000
PBE mue parameter XMuePBE .... 0.219520
Correlation Functional Correlation .... PBE
PBE beta parameter CBetaPBE .... 0.066725
LDA part of GGA corr. LDAOpt .... PW91-LDA
Gradients option PostSCFGGA .... off
NL short-range parameter .... 6.400000
RI-approximation to the Coulomb term is turned on
Number of AuxJ basis functions .... 507
General Settings:
Integral files IntName .... orca
Hartree-Fock type HFTyp .... RHF
Total Charge Charge .... 0
Multiplicity Mult .... 1
Number of Electrons NEL .... 64
Basis Dimension Dim .... 156
Nuclear Repulsion ENuc .... 395.9851578741 Eh
Convergence Acceleration:
AO-DIIS CNVDIIS .... on
Start iteration DIISMaxIt .... 12
Startup error DIISStart .... 0.200000
# of expansion vecs DIISMaxEq .... 5
Bias factor DIISBfac .... 1.050
Max. coefficient DIISMaxC .... 10.000
MO-DIIS CNVKDIIS .... off
Trust-Rad. Augm. Hess. CNVTRAH .... auto
Auto Start mean grad. ratio tolernc. .... 1.125000
Auto Start start iteration .... 1
Auto Start num. interpolation iter. .... 10
Max. Number of Micro iterations .... 24
Max. Number of Macro iterations .... Maxiter - #DIIS iter
Number of Davidson start vectors .... 2
Converg. threshold (grad. norm) .... 1.000e-05
Grad. Scal. Fac. for Micro threshold .... 0.100
Minimum threshold for Micro iter. .... 1.000e-02
NR start threshold (gradient norm) .... 1.000e-04
Initial trust radius .... 0.400
Minimum AH scaling param. (alpha) .... 1.000
Maximum AH scaling param. (alpha) .... 1000.000
Quad. conv. algorithm .... NR
White noise on init. David. guess .... on
Maximum white noise .... 0.010
Pseudo random numbers .... off
Inactive MOs .... canonical
Orbital update algorithm .... Taylor
Preconditioner .... Diag
Full preconditioner red. dimension .... 250
SOSCF CNVSOSCF .... on
Start iteration SOSCFMaxIt .... 150
Startup grad/error SOSCFStart .... 0.003300
Hessian update SOSCFHessUp .... L-BFGS
Autom. constraints SOSCFAutoConstrain .... off
Level Shifting CNVShift .... on
Level shift para. LevelShift .... 0.2500
Turn off err/grad. ShiftErr .... 0.0010
Zerner damping CNVZerner .... off
Static damping CNVDamp .... on
Fraction old density DampFac .... 0.7000
Max. Damping (<1) DampMax .... 0.9800
Min. Damping (>=0) DampMin .... 0.0000
Turn off err/grad. DampErr .... 0.1000
SCF Procedure:
Maximum # iterations MaxIter .... 125
SCF integral mode SCFMode .... Direct
Integral package .... SHARK and LIBINT hybrid scheme
Reset frequency DirectResetFreq .... 20
Integral Threshold Thresh .... 2.500e-11 Eh
Primitive CutOff TCut .... 2.500e-12 Eh
Convergence Tolerance:
Convergence Check Mode ConvCheckMode .... Total+1el-Energy
Convergence forced ConvForced .... 0
Energy Change TolE .... 1.000e-08 Eh
1-El. energy change .... 1.000e-05 Eh
Orbital Gradient TolG .... 1.000e-05
Orbital Rotation angle TolX .... 1.000e-05
DIIS Error TolErr .... 5.000e-07
---------------------
INITIAL GUESS: MOREAD
---------------------
Guess MOs are being read from file: orca.gbw
Input Geometry matches current geometry (good)
Input basis set matches current basis set (good)
Occupation numbers will be reassigned to an Aufbau configuration
MOs were renormalized
MOs were reorthogonalized (Cholesky)
------------------
INITIAL GUESS DONE ( 0.0 sec)
------------------
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
Finished Guess after 0.4 sec
Maximum memory used throughout the entire GUESS-calculation: 9.2 MB
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
-------------------------------------------------------------------------------------------
ORCA LEAN-SCF
memory conserving SCF solver
-------------------------------------------------------------------------------------------
----------------------------------------D-I-I-S--------------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP DIISErr Damp Time(sec)
-------------------------------------------------------------------------------------------
*** Starting incremental Fock matrix formation ***
*** Initializing SOSCF ***
---------------------------------------S-O-S-C-F--------------------------------------
Iteration Energy (Eh) Delta-E RMSDP MaxDP MaxGrad Time(sec)
--------------------------------------------------------------------------------------
1 -419.9994412241401847 0.00e+00 7.18e-05 6.39e-04 3.04e-05 0.1
*** Restarting incremental Fock matrix formation ***
2 -419.9994417640431834 -5.40e-07 2.65e-05 1.44e-04 3.00e-05 0.1
3 -419.9994417082083942 5.58e-08 2.19e-05 2.89e-04 9.42e-05 0.1
4 -419.9994418078082958 -9.96e-08 1.34e-05 1.41e-04 2.08e-05 0.1
5 -419.9994417981495758 9.66e-09 7.04e-06 4.82e-05 3.13e-05 0.1
**** Energy Check signals convergence ****
*****************************************************
* SUCCESS *
* SCF CONVERGED AFTER 5 CYCLES *
*****************************************************
**** ENERGY FILE WAS UPDATED (orca.en.tmp) ****
----------------
TOTAL SCF ENERGY
----------------
Total Energy : -419.99944181522363 Eh -11428.76584 eV
Components:
Nuclear Repulsion : 395.98515787414163 Eh 10775.30395 eV
Electronic Energy : -815.98459968936527 Eh -22204.06979 eV
One Electron Energy: -1355.18026133417402 Eh -36876.32967 eV
Two Electron Energy: 539.19566164480875 Eh 14672.25988 eV
Virial components:
Potential Energy : -836.03854102568164 Eh -22749.76528 eV
Kinetic Energy : 416.03909921045801 Eh 11320.99944 eV
Virial Ratio : 2.00951915964697
DFT components:
N(Alpha) : 31.999991304869 electrons
N(Beta) : 31.999991304869 electrons
N(Total) : 63.999982609739 electrons
E(X) : -54.609188655429 Eh
E(C) : -2.145013637649 Eh
E(XC) : -56.754202293078 Eh
---------------
SCF CONVERGENCE
---------------
Last Energy change ... -9.6587e-09 Tolerance : 1.0000e-08
Last MAX-Density change ... 4.8173e-05 Tolerance : 1.0000e-07
Last RMS-Density change ... 7.0433e-06 Tolerance : 5.0000e-09
Last DIIS Error ... 2.8733e-04 Tolerance : 5.0000e-07
Last Orbital Gradient ... 3.1340e-05 Tolerance : 1.0000e-05
Last Orbital Rotation ... 4.4230e-05 Tolerance : 1.0000e-05
----------------
ORBITAL ENERGIES
----------------
NO OCC E(Eh) E(eV)
0 2.0000 -18.813110 -511.9307
1 2.0000 -18.744285 -510.0579
2 2.0000 -9.981080 -271.5990
3 2.0000 -9.970843 -271.3204
4 2.0000 -9.922688 -270.0101
5 2.0000 -9.919998 -269.9369
6 2.0000 -9.919605 -269.9262
7 2.0000 -9.914301 -269.7818
8 2.0000 -9.908829 -269.6330
9 2.0000 -0.986517 -26.8445
10 2.0000 -0.930205 -25.3122
11 2.0000 -0.782949 -21.3051
12 2.0000 -0.687998 -18.7214
13 2.0000 -0.686691 -18.6858
14 2.0000 -0.589967 -16.0538
15 2.0000 -0.570895 -15.5348
16 2.0000 -0.512328 -13.9412
17 2.0000 -0.506816 -13.7912
18 2.0000 -0.458419 -12.4742
19 2.0000 -0.419886 -11.4257
20 2.0000 -0.399793 -10.8789
21 2.0000 -0.388617 -10.5748
22 2.0000 -0.385299 -10.4845
23 2.0000 -0.381067 -10.3694
24 2.0000 -0.353714 -9.6251
25 2.0000 -0.352241 -9.5850
26 2.0000 -0.343038 -9.3345
27 2.0000 -0.308261 -8.3882
28 2.0000 -0.303263 -8.2522
29 2.0000 -0.247288 -6.7290
30 2.0000 -0.215887 -5.8746
31 2.0000 -0.202589 -5.5127
32 0.0000 -0.087857 -2.3907
33 0.0000 -0.055407 -1.5077
34 0.0000 0.004260 0.1159
35 0.0000 0.006989 0.1902
36 0.0000 0.041715 1.1351
37 0.0000 0.060814 1.6548
38 0.0000 0.089081 2.4240
39 0.0000 0.106509 2.8983
40 0.0000 0.112694 3.0665
41 0.0000 0.124345 3.3836
42 0.0000 0.173652 4.7253
*Only the first 10 virtual orbitals were printed.
********************************
* MULLIKEN POPULATION ANALYSIS *
********************************
-----------------------
MULLIKEN ATOMIC CHARGES
-----------------------
0 C : 0.127836
1 O : -0.177749
2 C : -0.018995
3 C : 0.002603
4 C : -0.038735
5 C : 0.123048
6 O : -0.143963
7 C : -0.016358
8 C : -0.001632
9 H : -0.024812
10 H : 0.006768
11 H : -0.015558
12 H : 0.180409
13 H : -0.000767
14 H : -0.002093
Sum of atomic charges: -0.0000000
--------------------------------
MULLIKEN REDUCED ORBITAL CHARGES
--------------------------------
0 C s : 3.171793 s : 3.171793
pz : 0.810503 p : 2.619294
px : 0.920647
py : 0.888144
dz2 : 0.004046 d : 0.081078
dxz : 0.009750
dyz : 0.009365
dx2y2 : 0.036472
dxy : 0.021445
1 O s : 3.757338 s : 3.757338
pz : 1.301635 p : 4.403345
px : 1.638288
py : 1.463422
dz2 : 0.001827 d : 0.017066
dxz : 0.001900
dyz : 0.003519
dx2y2 : 0.004260
dxy : 0.005561
2 C s : 3.058693 s : 3.058693
pz : 1.036578 p : 2.924104
px : 0.925473
py : 0.962053
dz2 : 0.002839 d : 0.036198
dxz : 0.003763
dyz : 0.005908
dx2y2 : 0.012728
dxy : 0.010961
3 C s : 3.252565 s : 3.252565
pz : 0.924342 p : 2.712998
px : 0.878624
py : 0.910032
dz2 : 0.002236 d : 0.031834
dxz : 0.006093
dyz : 0.003232
dx2y2 : 0.009390
dxy : 0.010884
4 C s : 3.211869 s : 3.211869
pz : 1.063842 p : 2.797454
px : 0.904941
py : 0.828671
dz2 : 0.002359 d : 0.029413
dxz : 0.004808
dyz : 0.002864
dx2y2 : 0.007615
dxy : 0.011768
5 C s : 2.987231 s : 2.987231
pz : 0.960157 p : 2.816469
px : 0.811059
py : 1.045252
dz2 : 0.005189 d : 0.073252
dxz : 0.017176
dyz : 0.006739
dx2y2 : 0.023922
dxy : 0.020227
6 O s : 3.680524 s : 3.680524
pz : 1.776429 p : 4.449700
px : 1.293686
py : 1.379585
dz2 : 0.001970 d : 0.013738
dxz : 0.002434
dyz : 0.000785
dx2y2 : 0.005703
dxy : 0.002846
7 C s : 3.241899 s : 3.241899
pz : 1.034477 p : 2.745625
px : 0.857295
py : 0.853853
dz2 : 0.002327 d : 0.028834
dxz : 0.004670
dyz : 0.002984
dx2y2 : 0.007591
dxy : 0.011262
8 C s : 3.228522 s : 3.228522
pz : 0.953923 p : 2.741105
px : 0.900511
py : 0.886671
dz2 : 0.002199 d : 0.032005
dxz : 0.006314
dyz : 0.003124
dx2y2 : 0.009352
dxy : 0.011017
9 H s : 1.006276 s : 1.006276
pz : 0.002572 p : 0.018537
px : 0.004590
py : 0.011375
10 H s : 0.970329 s : 0.970329
pz : 0.004397 p : 0.022904
px : 0.007375
py : 0.011132
11 H s : 0.992915 s : 0.992915
pz : 0.005434 p : 0.022643
px : 0.005653
py : 0.011556
12 H s : 0.751193 s : 0.751193
pz : 0.017857 p : 0.068397
px : 0.017246
py : 0.033294
13 H s : 0.978134 s : 0.978134
pz : 0.005026 p : 0.022633
px : 0.006504
py : 0.011103
14 H s : 0.979559 s : 0.979559
pz : 0.004720 p : 0.022534
px : 0.006220
py : 0.011594
*******************************
* LOEWDIN POPULATION ANALYSIS *
*******************************
----------------------
LOEWDIN ATOMIC CHARGES
----------------------
0 C : 0.081046
1 O : -0.134591
2 C : -0.105222
3 C : 0.019174
4 C : -0.078371
5 C : 0.049602
6 O : -0.015673
7 C : -0.055130
8 C : 0.002414
9 H : -0.010034
10 H : 0.039938
11 H : 0.031535
12 H : 0.099959
13 H : 0.039864
14 H : 0.035490
-------------------------------
LOEWDIN REDUCED ORBITAL CHARGES
-------------------------------
0 C s : 2.897611 s : 2.897611
pz : 0.798553 p : 2.825493
px : 1.020781
py : 1.006159
dz2 : 0.010801 d : 0.195851
dxz : 0.018979
dyz : 0.016644
dx2y2 : 0.094865
dxy : 0.054562
1 O s : 3.561197 s : 3.561197
pz : 1.297436 p : 4.543711
px : 1.674265
py : 1.572010
dz2 : 0.004080 d : 0.029683
dxz : 0.002347
dyz : 0.004391
dx2y2 : 0.007110
dxy : 0.011755
2 C s : 2.871687 s : 2.871687
pz : 1.014252 p : 3.131835
px : 1.050882
py : 1.066700
dz2 : 0.008186 d : 0.101701
dxz : 0.007517
dyz : 0.012510
dx2y2 : 0.038815
dxy : 0.034673
3 C s : 2.869870 s : 2.869870
pz : 0.919089 p : 3.023922
px : 1.049072
py : 1.055761
dz2 : 0.005773 d : 0.087034
dxz : 0.012999
dyz : 0.006385
dx2y2 : 0.029020
dxy : 0.032857
4 C s : 2.871499 s : 2.871499
pz : 1.038078 p : 3.123266
px : 1.062689
py : 1.022499
dz2 : 0.006214 d : 0.083607
dxz : 0.010050
dyz : 0.005416
dx2y2 : 0.025969
dxy : 0.035958
5 C s : 2.851627 s : 2.851627
pz : 0.943093 p : 2.930595
px : 0.883663
py : 1.103839
dz2 : 0.011245 d : 0.168176
dxz : 0.033751
dyz : 0.013730
dx2y2 : 0.058545
dxy : 0.050904
6 O s : 3.424396 s : 3.424396
pz : 1.744483 p : 4.564281
px : 1.351788
py : 1.468010
dz2 : 0.004017 d : 0.026996
dxz : 0.003839
dyz : 0.000430
dx2y2 : 0.012660
dxy : 0.006050
7 C s : 2.870751 s : 2.870751
pz : 1.017355 p : 3.102609
px : 1.053574
py : 1.031680
dz2 : 0.006122 d : 0.081770
dxz : 0.009878
dyz : 0.005674
dx2y2 : 0.025962
dxy : 0.034133
8 C s : 2.869722 s : 2.869722
pz : 0.939534 p : 3.040205
px : 1.054787
py : 1.045884
dz2 : 0.005607 d : 0.087658
dxz : 0.013380
dyz : 0.006198
dx2y2 : 0.029230
dxy : 0.033243
9 H s : 0.947165 s : 0.947165
pz : 0.008228 p : 0.062869
px : 0.014393
py : 0.040248
10 H s : 0.890997 s : 0.890997
pz : 0.012450 p : 0.069065
px : 0.022543
py : 0.034072
11 H s : 0.900925 s : 0.900925
pz : 0.015815 p : 0.067540
px : 0.017157
py : 0.034567
12 H s : 0.728722 s : 0.728722
pz : 0.045778 p : 0.171319
px : 0.036808
py : 0.088733
13 H s : 0.891689 s : 0.891689
pz : 0.015063 p : 0.068447
px : 0.019441
py : 0.033943
14 H s : 0.897602 s : 0.897602
pz : 0.013356 p : 0.066908
px : 0.018711
py : 0.034842
*****************************
* MAYER POPULATION ANALYSIS *
*****************************
NA - Mulliken gross atomic population
ZA - Total nuclear charge
QA - Mulliken gross atomic charge
VA - Mayer's total valence
BVA - Mayer's bonded valence
FA - Mayer's free valence
ATOM NA ZA QA VA BVA FA
0 C 5.8722 6.0000 0.1278 4.0851 4.0851 -0.0000
1 O 8.1777 8.0000 -0.1777 2.3098 2.3098 -0.0000
2 C 6.0190 6.0000 -0.0190 3.6922 3.6922 -0.0000
3 C 5.9974 6.0000 0.0026 3.8701 3.8701 -0.0000
4 C 6.0387 6.0000 -0.0387 3.7508 3.7508 -0.0000
5 C 5.8770 6.0000 0.1230 3.9971 3.9971 0.0000
6 O 8.1440 8.0000 -0.1440 2.3172 2.3172 -0.0000
7 C 6.0164 6.0000 -0.0164 3.8226 3.8226 0.0000
8 C 6.0016 6.0000 -0.0016 3.8126 3.8126 0.0000
9 H 1.0248 1.0000 -0.0248 0.9782 0.9782 -0.0000
10 H 0.9932 1.0000 0.0068 1.0109 1.0109 -0.0000
11 H 1.0156 1.0000 -0.0156 0.9906 0.9906 -0.0000
12 H 0.8196 1.0000 0.1804 1.0109 1.0109 -0.0000
13 H 1.0008 1.0000 -0.0008 0.9947 0.9947 0.0000
14 H 1.0021 1.0000 -0.0021 0.9909 0.9909 0.0000
Mayer bond orders larger than 0.100000
B( 0-C , 1-O ) : 2.1209 B( 0-C , 2-C ) : 1.0096 B( 0-C , 9-H ) : 0.9225
B( 2-C , 3-C ) : 1.3288 B( 2-C , 8-C ) : 1.3056 B( 3-C , 4-C ) : 1.3967
B( 3-C , 10-H ) : 0.9700 B( 4-C , 5-C ) : 1.2737 B( 4-C , 11-H ) : 0.9715
B( 5-C , 6-O ) : 1.2338 B( 5-C , 7-C ) : 1.3241 B( 6-O , 12-H ) : 0.9568
B( 7-C , 8-C ) : 1.3979 B( 7-C , 13-H ) : 0.9806 B( 8-C , 14-H ) : 0.9720
-------
TIMINGS
-------
Total SCF time: 0 days 0 hours 0 min 0 sec
Total time .... 0.887 sec
Sum of individual times .... 0.806 sec ( 90.9%)
SCF preparation .... 0.371 sec ( 41.8%)
Fock matrix formation .... 0.375 sec ( 42.3%)
Startup .... 0.001 sec ( 0.3% of F)
Split-RI-J .... 0.145 sec ( 38.7% of F)
XC integration .... 0.279 sec ( 74.3% of F)
XC Preparation .... 0.000 sec ( 0.0% of XC)
Basis function eval. .... 0.092 sec ( 33.0% of XC)
Density eval. .... 0.047 sec ( 16.7% of XC)
XC-Functional eval. .... 0.017 sec ( 6.1% of XC)
XC-Potential eval. .... 0.060 sec ( 21.7% of XC)
Diagonalization .... 0.000 sec ( 0.0%)
Density matrix formation .... 0.005 sec ( 0.6%)
Total Energy calculation .... 0.003 sec ( 0.3%)
Population analysis .... 0.020 sec ( 2.2%)
Orbital Transformation .... 0.004 sec ( 0.4%)
Orbital Orthonormalization .... 0.000 sec ( 0.0%)
DIIS solution .... 0.005 sec ( 0.6%)
SOSCF solution .... 0.024 sec ( 2.7%)
Finished LeanSCF after 0.9 sec
Maximum memory used throughout the entire LEANSCF-calculation: 9.5 MB
-------------------------------------------------------------------------------
DFT DISPERSION CORRECTION
DFTD4 V3.4.0
-------------------------------------------------------------------------------
The PBE functional is recognized
Active option DFTDOPT ... 5
------------------------- ----------------
Dispersion correction -0.015283073
------------------------- ----------------
------------------------- --------------------
FINAL SINGLE POINT ENERGY -420.014724888672
------------------------- --------------------
*** OPTIMIZATION RUN DONE ***
************************************************************
* Program running with 10 parallel MPI-processes *
* working on a common directory *
************************************************************
------------------------------------------------------------------------------
ORCA PROPERTY CALCULATIONS
------------------------------------------------------------------------------
GBWName ... orca.gbw
Number of atoms ... 15
Number of basis functions ... 156
Max core memory ... 4096 MB
Electric properties:
Dipole moment ... YES
Quadrupole moment ... NO
Static polarizability (Dipole/Dipole) ... NO
Static polarizability (Dipole/Quad.) ... NO
Static polarizability (Quad./Quad.) ... NO
Static polarizability (Velocity) ... NO
Static hyperpolarizability ... NO
Atomic electric properties:
Dipole moment ... NO
Quadrupole moment ... NO
Static polarizability ... NO
Choice of electric origin ... Center of mass
Position of electric origin ... -0.248659 -0.132732 -0.003071
General magnetic properties:
Magnetizability ... NO
EPR properties:
g-Tensor (aka g-matrix) ... NO
Zero-Field splitting spin-orbit ... NO
Zero-field splitting spin-spin ... NO
Hyperfine couplings ... NO ( 0 nuclei)
Quadrupole couplings ... NO ( 0 nuclei)
Contact density ... NO ( 0 nuclei)
NMR properties:
Chemical shifts ... NO ( 0 nuclei)
Spin-rotation constants ... NO ( 0 nuclei)
Spin-spin couplings ... NO ( 0 nuclei, 0 pairs)
Choice of magnetic origin ... GIAO
Position of magnetic origin ... 0.000000 0.000000 0.000000
Properties with geometric perturbations:
SCF Hessian ... NO
IR spectrum ... NO
VCD spectrum ... NO
X-ray spectroscopy properties:
SCF XES/XAS/RIXS spectra ... NO
SCF SOC stabilization energy ... NO
Diagonal Born-Oppenheimer correction ... NO
-------------
DIPOLE MOMENT
-------------
Method : SCF
Type of density : Electron Density
Multiplicity : 1
Irrep : 0
Energy : -419.9994418152236335 Eh
Basis : AO
X Y Z
Electronic contribution: -0.573112966 -0.765904493 0.022571738
Nuclear contribution : 2.004662635 0.829513323 0.040483403
-----------------------------------------
Total Dipole Moment : 1.431549669 0.063608830 0.063055141
-----------------------------------------
Magnitude (a.u.) : 1.434348803
Magnitude (Debye) : 3.645824919
--------------------
Rotational spectrum
--------------------
Rotational constants in cm-1: 0.167043 0.032855 0.027455
Rotational constants in MHz : 5007.827576 984.956298 823.071997
Dipole components along the rotational axes:
x,y,z [a.u.] : -1.431323 -0.093100 -0.001516
x,y,z [Debye]: -3.638135 -0.236642 -0.003853
Dipole moment calculation done in 0.0 sec
Maximum memory used throughout the entire PROP-calculation: 7.6 MB
--------------------------------
SUGGESTED CITATIONS FOR THIS RUN
--------------------------------
Below you find a list of papers that are relevant to this ORCA run
We neither can nor want to force you to cite these papers, but we appreciate if you do
You receive ORCA, which is the product of decades of hard work by many enthusiastic individuals, for free
The only thing we kindly ask in return is that you cite our papers,
We deeply appreciate it, if you show your appreciation for ORCA by not just citing the generic ORCA reference.
Please note that relegating all ORCA citations to the supporting information does *not* help us.
SI sections are not indexed - citations you put there will not count into any citation statistics
But we need these citations in order to attract the funding resources that allow us to do what we are doing
Therefore, if you are a happy ORCA user, please consider citing a few of the papers listed below in the main body of your paper
In addition to the list printed below, the program has created the file orca.bibtex that contains the list in bibtex format
You can import this file easily into all common literature databanks and citation aid programs
List of essential papers. We consider these as the minimum necessary citations
1. Neese, F.
Software update: the ORCA program system, version 6.0
WIRES Comput. Molec. Sci. 2025 15(1), e70019
doi.org/10.1002/wcms.7019
List of papers to cite with high priority. The work reported in these papers was absolutely
necessary for this run to complete.
Our perspective: the developers of density functionals and basis sets usually get cited in chemistry papers
Good! But without the algorithms to do something with them, the functionals or basis sets would not do anything.
Hence, in our opinion, the algorithm design and method developments papers are equally worthy of getting cited
1. Neese, F.
An improvement of the resolution of the identity approximation for the formation of the Coulomb matrix
J. Comp. Chem. 2003 24(14), 1740-1747
doi.org/10.1002/jcc.10318
2. Caldeweyher, E.; Bannwarth, C.; Grimme, S.
Extension of the D3 dispersion coefficient model
J. Chem. Phys. 2017 147 , 034112
doi.org/10.1063/1.4993215
3. Caldeweyher, E.; Ehlert, S.; Hansen, A.; Neugebauer, H.; Spicher, S.; Bannwarth, C.; Grimme, S.
A generally applicable atomic-charge dependent London dispersion correction
J. Chem. Phys. 2019 150 , 154122
doi.org/10.1063/1.5090222
4. Caldeweyher, E.; Mewes, J.; Ehlert, S.; Grimme, S.
Extension and evaluation of the D4 London-dispersion model for periodic systems
Phys. Chem. Chem. Phys. 2020 22(16), 8499-8512
doi.org/10.1039/D0CP00502A
5. Neese, F.
The SHARK Integral Generation and Digestion System
J. Comp. Chem. 2022 44(3), 381
doi.org/10.1002/jcc.26942
6. Wittmann, L.; Gordiy, I.; Friede, M.; Helmich-Paris, B.; Grimme, S.; Hansen, A.; Bursch, M.
Extension of the D3 and D4 London Dispersion Corrections to the full Actinides Series
Phys. Chem. Chem. Phys. 2024 26(32), 21379-21394
doi.org/10.1039/D4CP01514B
List of suggested additional citations. These are papers that are important in the 'surrounding' of
of this run, or papers that preceded the highly important papers. If you like your results we are grateful for a citation.
1. Neese, F.
The ORCA program system
WIRES Comput. Molec. Sci. 2012 2(1), 73-78
doi.org/10.1002/wcms.81
2. Neese, F.
Software update: the ORCA program system, version 4.0
WIRES Comput. Molec. Sci. 2018 8(1), 1-6
doi.org/10.1002/wcms.1327
3. Neese, F.; Wennmohs, F.; Becker, U.; Riplinger, C.
The ORCA quantum chemistry program package
J. Chem. Phys. 2020 152(22), 224108
doi.org/10.1063/5.0004608
4. Neese, F.
Software update: The ORCA program system—Version 5.0
WIRES Comput. Molec. Sci. 2022 12(1), e1606
doi.org/10.1002/wcms.1606
List of optional additional citations
1. Neese, F.
Approximate second-order SCF convergence for spin unrestricted wavefunctions
Chem. Phys. Lett. 2000 325(1-3), 93-98
doi.org/10.1016/s0009-2614(00)00662-x
Timings for individual modules:
Sum of individual times ... 67.958 sec (= 1.133 min)
Startup calculation ... 12.702 sec (= 0.212 min) 18.7 %
SCF iterations ... 41.558 sec (= 0.693 min) 61.2 %
Property calculations ... 0.625 sec (= 0.010 min) 0.9 %
SCF Gradient evaluation ... 13.041 sec (= 0.217 min) 19.2 %
Geometry relaxation ... 0.032 sec (= 0.001 min) 0.0 %
****ORCA TERMINATED NORMALLY****
TOTAL RUN TIME: 0 days 0 hours 1 minutes 14 seconds 597 msec