sfBSE/output/H2/SF-TDDFT/bhhlyp/h2_2.55.log
2021-01-22 16:55:53 +01:00

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Running Job 1 of 1 h2_2.55.inp
qchem h2_2.55.inp_9483.0 /mnt/beegfs/tmpdir/qchem9483/ 0
/share/apps/common/q-chem/5.2.1/exe/qcprog.exe_s h2_2.55.inp_9483.0 /mnt/beegfs/tmpdir/qchem9483/
Welcome to Q-Chem
A Quantum Leap Into The Future Of Chemistry
Q-Chem 5.2, Q-Chem, Inc., Pleasanton, CA (2019)
Yihan Shao, Zhengting Gan, E. Epifanovsky, A. T. B. Gilbert, M. Wormit,
J. Kussmann, A. W. Lange, A. Behn, Jia Deng, Xintian Feng, D. Ghosh,
M. Goldey, P. R. Horn, L. D. Jacobson, I. Kaliman, T. Kus, A. Landau,
Jie Liu, E. I. Proynov, R. M. Richard, R. P. Steele, E. J. Sundstrom,
H. L. Woodcock III, P. M. Zimmerman, D. Zuev, B. Albrecht, E. Alguire,
S. A. Baeppler, D. Barton, Z. Benda, Y. A. Bernard, E. J. Berquist,
K. B. Bravaya, H. Burton, D. Casanova, Chun-Min Chang, Yunqing Chen,
A. Chien, K. D. Closser, M. P. Coons, S. Coriani, S. Dasgupta,
A. L. Dempwolff, M. Diedenhofen, Hainam Do, R. G. Edgar, Po-Tung Fang,
S. Faraji, S. Fatehi, Qingguo Feng, K. D. Fenk, J. Fosso-Tande,
J. Gayvert, Qinghui Ge, A. Ghysels, G. Gidofalvi, J. Gomes,
J. Gonthier, A. Gunina, D. Hait, M. W. D. Hanson-Heine,
P. H. P. Harbach, A. W. Hauser, M. F. Herbst, J. E. Herr,
E. G. Hohenstein, Z. C. Holden, Kerwin Hui, B. C. Huynh, T.-C. Jagau,
Hyunjun Ji, B. Kaduk, K. Khistyaev, Jaehoon Kim, P. Klunzinger, K. Koh,
D. Kosenkov, L. Koulias, T. Kowalczyk, C. M. Krauter, A. Kunitsa,
Ka Un Lao, A. Laurent, K. V. Lawler, Joonho Lee, D. Lefrancois,
S. Lehtola, D. S. Levine, Yi-Pei Li, You-Sheng Lin, Fenglai Liu,
E. Livshits, A. Luenser, P. Manohar, E. Mansoor, S. F. Manzer,
Shan-Ping Mao, Yuezhi Mao, N. Mardirossian, A. V. Marenich,
T. Markovich, L. A. Martinez-Martinez, S. A. Maurer, N. J. Mayhall,
S. C. McKenzie, J.-M. Mewes, P. Morgante, A. F. Morrison,
J. W. Mullinax, K. Nanda, T. S. Nguyen-Beck, R. Olivares-Amaya,
J. A. Parkhill, Zheng Pei, T. M. Perrine, F. Plasser, P. Pokhilko,
S. Prager, A. Prociuk, E. Ramos, D. R. Rehn, F. Rob, M. Scheurer,
M. Schneider, N. Sergueev, S. M. Sharada, S. Sharma, D. W. Small,
T. Stauch, T. Stein, Yu-Chuan Su, A. J. W. Thom, A. Tkatchenko,
T. Tsuchimochi, N. M. Tubman, L. Vogt, M. L. Vidal, O. Vydrov,
M. A. Watson, J. Wenzel, M. de Wergifosse, T. A. Wesolowski, A. White,
J. Witte, A. Yamada, Jun Yang, K. Yao, S. Yeganeh, S. R. Yost,
Zhi-Qiang You, A. Zech, Igor Ying Zhang, Xing Zhang, Yan Zhao,
Ying Zhu, B. R. Brooks, G. K. L. Chan, C. J. Cramer, M. S. Gordon,
W. J. Hehre, A. Klamt, M. W. Schmidt, C. D. Sherrill, D. G. Truhlar,
A. Aspuru-Guzik, R. Baer, A. T. Bell, N. A. Besley, Jeng-Da Chai,
A. E. DePrince, III, R. A. DiStasio Jr., A. Dreuw, B. D. Dunietz,
T. R. Furlani, Chao-Ping Hsu, Yousung Jung, Jing Kong, D. S. Lambrecht,
WanZhen Liang, C. Ochsenfeld, V. A. Rassolov, L. V. Slipchenko,
J. E. Subotnik, T. Van Voorhis, J. M. Herbert, A. I. Krylov,
P. M. W. Gill, M. Head-Gordon
Contributors to earlier versions of Q-Chem not listed above:
R. D. Adamson, B. Austin, J. Baker, G. J. O. Beran, K. Brandhorst,
S. T. Brown, E. F. C. Byrd, A. K. Chakraborty, C.-L. Cheng,
Siu Hung Chien, D. M. Chipman, D. L. Crittenden, H. Dachsel,
R. J. Doerksen, A. D. Dutoi, L. Fusti-Molnar, W. A. Goddard III,
A. Golubeva-Zadorozhnaya, S. R. Gwaltney, G. Hawkins, A. Heyden,
S. Hirata, G. Kedziora, F. J. Keil, C. Kelley, Jihan Kim, R. A. King,
R. Z. Khaliullin, P. P. Korambath, W. Kurlancheek, A. M. Lee, M. S. Lee,
S. V. Levchenko, Ching Yeh Lin, D. Liotard, R. C. Lochan, I. Lotan,
P. E. Maslen, N. Nair, D. P. O'Neill, D. Neuhauser, E. Neuscamman,
C. M. Oana, R. Olson, B. Peters, R. Peverati, P. A. Pieniazek,
Y. M. Rhee, J. Ritchie, M. A. Rohrdanz, E. Rosta, N. J. Russ,
H. F. Schaefer III, N. E. Schultz, N. Shenvi, A. C. Simmonett, A. Sodt,
D. Stuck, K. S. Thanthiriwatte, V. Vanovschi, Tao Wang, A. Warshel,
C. F. Williams, Q. Wu, X. Xu, W. Zhang
Please cite Q-Chem as follows:
Y. Shao et al., Mol. Phys. 113, 184-215 (2015)
DOI: 10.1080/00268976.2014.952696
Q-Chem 5.2.1 for Intel X86 EM64T Linux
Parts of Q-Chem use Armadillo 8.300.2 (Tropical Shenanigans).
http://arma.sourceforge.net/
Q-Chem begins on Fri Jan 22 16:34:25 2021
Host:
0
Scratch files written to /mnt/beegfs/tmpdir/qchem9483//
Jul1719 |scratch|qcdevops|jenkins|workspace|build_RNUM 6358
Processing $rem in /share/apps/common/q-chem/5.2.1/config/preferences:
MEM_TOTAL 5000
NAlpha2: 4
NElect 2
Mult 3
Checking the input file for inconsistencies... ...done.
--------------------------------------------------------------
User input:
--------------------------------------------------------------
$comment
SF-TDDFT
$end
$molecule
0 3
H 0 0 0
H 0 0 2.55
$end
$rem
JOBTYPE = sp
METHOD = BHHLYP
BASIS = CC-PVQZ
PURECART = 2222
SCF_CONVERGENCE = 9
THRESH = 12
MAX_SCF_CYCLES = 100
MAX_CIS_CYCLES = 100
SPIN_FLIP = TRUE
UNRESTRICTED = TRUE
CIS_N_ROOTS = 20
RPA = FALSE
$end
--------------------------------------------------------------
----------------------------------------------------------------
Standard Nuclear Orientation (Angstroms)
I Atom X Y Z
----------------------------------------------------------------
1 H 0.0000000000 0.0000000000 -1.2750000000
2 H 0.0000000000 0.0000000000 1.2750000000
----------------------------------------------------------------
Molecular Point Group D*h NOp =***
Largest Abelian Subgroup D2h NOp = 1
Nuclear Repulsion Energy = 0.20752047 hartrees
There are 2 alpha and 0 beta electrons
Q-Chem warning in module forms1/BasisType.C, line 1983:
You are not using the predefined 5D/6D in this basis set.
Requested basis set is cc-pVQZ
There are 20 shells and 70 basis functions
Total QAlloc Memory Limit 5000 MB
Mega-Array Size 188 MB
MEM_STATIC part 192 MB
Distance Matrix (Angstroms)
H ( 1)
H ( 2) 2.550000
A cutoff of 1.0D-12 yielded 207 shell pairs
There are 2646 function pairs
Smallest overlap matrix eigenvalue = 1.72E-03
Scale SEOQF with 1.000000e+00/1.000000e+00/1.000000e+00
Standard Electronic Orientation quadrupole field applied
Nucleus-field energy = -0.0000000035 hartrees
Guess from superposition of atomic densities
Warning: Energy on first SCF cycle will be non-variational
SAD guess density has 0.090382 electrons
-----------------------------------------------------------------------
General SCF calculation program by
Eric Jon Sundstrom, Paul Horn, Yuezhi Mao, Dmitri Zuev, Alec White,
David Stuck, Shaama M.S., Shane Yost, Joonho Lee, David Small,
Daniel Levine, Susi Lehtola, Hugh Burton, Evgeny Epifanovsky,
Bang C. Huynh
-----------------------------------------------------------------------
Exchange: 0.5000 Hartree-Fock + 0.5000 B88
Correlation: 1.0000 LYP
Using SG-1 standard quadrature grid
A unrestricted SCF calculation will be
performed using DIIS
SCF converges when DIIS error is below 1.0e-09
---------------------------------------
Cycle Energy DIIS error
---------------------------------------
1 0.1362373707 7.57e-04
2 -0.9669919468 8.11e-03
3 -0.9682688005 7.87e-03
4 -0.9905648706 2.35e-03
5 -0.9946542496 1.98e-05
6 -0.9946545525 3.34e-05
7 -0.9946556537 7.69e-07
8 -0.9946556542 9.87e-08
9 -0.9946556542 6.53e-09
10 -0.9946556542 8.31e-11 Convergence criterion met
---------------------------------------
SCF time: CPU 1.42s wall 2.00s
<S^2> = 2.000000000
SCF energy in the final basis set = -0.9946556542
Total energy in the final basis set = -0.9946556542
Spin-flip DFT calculation will be performed
CIS energy converged when residual is below 10e- 6
---------------------------------------------------
Iter Rts Conv Rts Left Ttl Dev Max Dev
---------------------------------------------------
1 0 20 0.049967 0.004281
2 0 20 0.001709 0.000188
3 8 12 0.000035 0.000004
4 20 0 0.000001 0.000000 Roots Converged
---------------------------------------------------
---------------------------------------------------
SF-DFT Excitation Energies
(The first "excited" state might be the ground state)
---------------------------------------------------
Excited state 1: excitation energy (eV) = 4.5423
Total energy for state 1: -0.82772827 au
<S**2> : 0.0404
S( 1) --> S( 2) amplitude = -0.4420 alpha
S( 1) --> V( 2) amplitude = -0.1610 alpha
S( 2) --> S( 1) amplitude = 0.8616 alpha
S( 2) --> V( 1) amplitude = -0.1810 alpha
Excited state 2: excitation energy (eV) = 4.9449
Total energy for state 2: -0.81293254 au
<S**2> : 1.9620
S( 1) --> S( 1) amplitude = 0.7199 alpha
S( 1) --> V( 1) amplitude = -0.1725 alpha
S( 2) --> S( 2) amplitude = -0.6387 alpha
S( 2) --> V( 2) amplitude = -0.2000 alpha
Excited state 3: excitation energy (eV) = 9.1823
Total energy for state 3: -0.65721241 au
<S**2> : 0.1808
S( 1) --> S( 1) amplitude = 0.6714 alpha
S( 2) --> S( 2) amplitude = 0.7345 alpha
Excited state 4: excitation energy (eV) = 9.6499
Total energy for state 4: -0.64002990 au
<S**2> : 0.1742
S( 1) --> S( 2) amplitude = 0.8552 alpha
S( 2) --> S( 1) amplitude = 0.4856 alpha
Excited state 5: excitation energy (eV) = 14.4433
Total energy for state 5: -0.46387384 au
<S**2> : 0.9617
S( 1) --> S( 2) amplitude = -0.2380 alpha
S( 1) --> V( 2) amplitude = 0.4839 alpha
S( 2) --> V( 1) amplitude = 0.8250 alpha
Excited state 6: excitation energy (eV) = 14.5363
Total energy for state 6: -0.46045659 au
<S**2> : 1.0256
S( 1) --> S( 1) amplitude = 0.1691 alpha
S( 1) --> V( 1) amplitude = 0.5788 alpha
S( 2) --> S( 2) amplitude = -0.2123 alpha
S( 2) --> V( 2) amplitude = 0.7635 alpha
Excited state 7: excitation energy (eV) = 17.6924
Total energy for state 7: -0.34447143 au
<S**2> : 0.8695
S( 1) --> V( 1) amplitude = 0.7935 alpha
S( 2) --> V( 2) amplitude = -0.6028 alpha
Excited state 8: excitation energy (eV) = 17.8410
Total energy for state 8: -0.33901250 au
<S**2> : 0.8856
S( 1) --> V( 2) amplitude = 0.8259 alpha
S( 2) --> V( 1) amplitude = -0.5189 alpha
S( 2) --> V( 3) amplitude = 0.1938 alpha
Excited state 9: excitation energy (eV) = 18.2626
Total energy for state 9: -0.32351894 au
<S**2> : 0.9563
S( 1) --> V( 2) amplitude = -0.1842 alpha
S( 1) --> V( 8) amplitude = -0.1619 alpha
S( 2) --> V( 3) amplitude = 0.9620 alpha
Excited state 10: excitation energy (eV) = 18.5915
Total energy for state 10: -0.31143148 au
<S**2> : 1.0000
S( 1) --> V( 7) amplitude = 0.3764 alpha
S( 2) --> V( 5) amplitude = 0.9257 alpha
Excited state 11: excitation energy (eV) = 18.5915
Total energy for state 11: -0.31143148 au
<S**2> : 1.0000
S( 1) --> V( 6) amplitude = 0.3764 alpha
S( 2) --> V( 4) amplitude = 0.9257 alpha
Excited state 12: excitation energy (eV) = 19.2175
Total energy for state 12: -0.28842469 au
<S**2> : 1.0000
S( 1) --> V( 5) amplitude = 0.8008 alpha
S( 2) --> V( 7) amplitude = 0.5976 alpha
Excited state 13: excitation energy (eV) = 19.2175
Total energy for state 13: -0.28842469 au
<S**2> : 1.0000
S( 1) --> V( 4) amplitude = 0.8008 alpha
S( 2) --> V( 6) amplitude = 0.5976 alpha
Excited state 14: excitation energy (eV) = 19.3170
Total energy for state 14: -0.28476935 au
<S**2> : 0.9738
S( 1) --> V( 3) amplitude = 0.9714 alpha
S( 2) --> V( 8) amplitude = -0.2065 alpha
Excited state 15: excitation energy (eV) = 22.6746
Total energy for state 15: -0.16137861 au
<S**2> : 1.0000
S( 1) --> V( 5) amplitude = -0.5984 alpha
S( 2) --> V( 7) amplitude = 0.8010 alpha
Excited state 16: excitation energy (eV) = 22.6746
Total energy for state 16: -0.16137861 au
<S**2> : 1.0000
S( 1) --> V( 4) amplitude = -0.5984 alpha
S( 2) --> V( 6) amplitude = 0.8010 alpha
Excited state 17: excitation energy (eV) = 23.3426
Total energy for state 17: -0.13683121 au
<S**2> : 1.0000
S( 1) --> V( 7) amplitude = 0.9258 alpha
S( 2) --> V( 5) amplitude = -0.3773 alpha
Excited state 18: excitation energy (eV) = 23.3426
Total energy for state 18: -0.13683121 au
<S**2> : 1.0000
S( 1) --> V( 6) amplitude = 0.9258 alpha
S( 2) --> V( 4) amplitude = -0.3773 alpha
Excited state 19: excitation energy (eV) = 26.6786
Total energy for state 19: -0.01423687 au
<S**2> : 0.9990
S( 1) --> V( 3) amplitude = 0.2048 alpha
S( 2) --> V( 8) amplitude = 0.9758 alpha
Excited state 20: excitation energy (eV) = 27.8479
Total energy for state 20: 0.02873749 au
<S**2> : 0.9990
S( 1) --> V( 8) amplitude = 0.9838 alpha
S( 2) --> V( 3) amplitude = 0.1572 alpha
---------------------------------------------------
SETman timing summary (seconds)
CPU time 1.01s
System time 0.00s
Wall time 1.62s
--------------------------------------------------------------
Orbital Energies (a.u.)
--------------------------------------------------------------
Alpha MOs
-- Occupied --
-0.4067 -0.3617
-- Virtual --
0.1998 0.2125 0.3308 0.3671 0.3671 0.4415 0.4415 0.6236
0.9788 1.0712 1.6673 1.6673 1.7122 1.7289 1.7289 1.7564
1.8983 1.9137 1.9137 1.9306 1.9308 1.9357 1.9359 1.9821
1.9821 2.2921 2.9056 2.9233 4.2500 4.2500 4.2918 4.2918
4.3608 4.3764 5.8655 5.8656 5.8656 5.8657 5.8657 5.8657
5.8657 5.8657 5.8659 5.8659 5.8676 5.8676 5.8722 5.8941
7.8376 7.8679 7.8679 7.8848 7.8849 7.8881 7.8882 7.9117
7.9117 8.0722 9.3365 9.3471 9.4517 9.4517 9.4701 9.4701
9.5075 9.5231 22.2972 22.3643
--------------------------------------------------------------
Ground-State Mulliken Net Atomic Charges
Atom Charge (a.u.) Spin (a.u.)
--------------------------------------------------------
1 H -0.000000 1.000000
2 H 0.000000 1.000000
--------------------------------------------------------
Sum of atomic charges = -0.000000
Sum of spin charges = 2.000000
-----------------------------------------------------------------
Cartesian Multipole Moments
-----------------------------------------------------------------
Charge (ESU x 10^10)
-0.0000
Dipole Moment (Debye)
X 0.0000 Y 0.0000 Z 0.0000
Tot 0.0000
Quadrupole Moments (Debye-Ang)
XX -2.7270 XY -0.0000 YY -2.7270
XZ -0.0000 YZ -0.0000 ZZ -2.9738
Octopole Moments (Debye-Ang^2)
XXX 0.0000 XXY -0.0000 XYY 0.0000
YYY -0.0000 XXZ 0.0000 XYZ -0.0000
YYZ 0.0000 XZZ 0.0000 YZZ -0.0000
ZZZ 0.0000
Hexadecapole Moments (Debye-Ang^3)
XXXX -3.5112 XXXY -0.0000 XXYY -1.1704
XYYY -0.0000 YYYY -3.5112 XXXZ -0.0000
XXYZ -0.0000 XYYZ -0.0000 YYYZ -0.0000
XXZZ -5.7474 XYZZ -0.0000 YYZZ -5.7474
XZZZ -0.0000 YZZZ -0.0000 ZZZZ -31.4787
-----------------------------------------------------------------
Archival summary:
1\1\lcpq-curie.ups-tlse.fr\SP\ProcedureUnspecified\BasisUnspecified\2(3)\emonino\FriJan2216:34:282021FriJan2216:34:282021\0\\#,ProcedureUnspecified,BasisUnspecified,\\0,3\H\H,1,2.55\\\@
Total job time: 3.64s(wall), 2.55s(cpu)
Fri Jan 22 16:34:28 2021
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* Thank you very much for using Q-Chem. Have a nice day. *
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