SQMBox: Interfacing a semiempirical integral library to modular ab initio electronic structure enables new semiempirical methods

被引:6
作者
Bannwarth, Christoph [1 ]
Martinez, Todd J.
机构
[1] Rhein Westfal TH Aachen, Inst Phys Chem, D-52074 Aachen, Germany
关键词
DENSITY-FUNCTIONAL THEORY; QUANTUM-CHEMISTRY; EXCITED-STATES; TD-DFTB; PRINCIPLES;
D O I
10.1063/5.0132776
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Ab initio and semiempirical electronic structure methods are usually implemented in separate software packages or use entirely different code paths. As a result, it can be time-consuming to transfer an established ab initio electronic structure scheme to a semiempirical Hamiltonian. We present an approach to unify ab initio and semiempirical electronic structure code paths based on a separation of the wavefunction ansatz and the needed matrix representations of operators. With this separation, the Hamiltonian can refer to either an ab initio or semiempirical treatment of the resulting integrals. We built a semiempirical integral library and interfaced it to the GPU-accelerated electronic structure code TeraChem. Equivalency between ab initio and semiempirical tight-binding Hamiltonian terms is assigned according to their dependence on the one-electron density matrix. The new library provides semiempirical equivalents of the Hamiltonian matrix and gradient intermediates, corresponding to those provided by the ab initio integral library. This enables the straightforward combination of semiempirical Hamiltonians with the full pre-existing ground and excited state functionality of the ab initio electronic structure code. We demonstrate the capability of this approach by combining the extended tight-binding method GFN1-xTB with both spin-restricted ensemble-referenced Kohn-Sham and complete active space methods. We also present a highly efficient GPU implementation of the semiempirical Mulliken-approximated Fock exchange. The additional computational cost for this term becomes negligible even on consumer-grade GPUs, enabling Mulliken-approximated exchange in tight-binding methods for essentially no additional cost.
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页数:17
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共 68 条
  • [1] PRINCIPLES FOR A DIRECT SCF APPROACH TO LCAO-MO ABINITIO CALCULATIONS
    ALMLOF, J
    FAEGRI, K
    KORSELL, K
    [J]. JOURNAL OF COMPUTATIONAL CHEMISTRY, 1982, 3 (03) : 385 - 399
  • [2] NWChem: Past, present, and future
    Apra, E.
    Bylaska, E. J.
    de Jong, W. A.
    Govind, N.
    Kowalski, K.
    Straatsma, T. P.
    Valiev, M.
    van Dam, H. J. J.
    Alexeev, Y.
    Anchell, J.
    Anisimov, V
    Aquino, F. W.
    Atta-Fynn, R.
    Autschbach, J.
    Bauman, N. P.
    Becca, J. C.
    Bernholdt, D. E.
    Bhaskaran-Nair, K.
    Bogatko, S.
    Borowski, P.
    Boschen, J.
    Brabec, J.
    Bruner, A.
    Cauet, E.
    Chen, Y.
    Chuev, G. N.
    Cramer, C. J.
    Daily, J.
    Deegan, M. J. O.
    Dunning, T. H., Jr.
    Dupuis, M.
    Dyall, K. G.
    Fann, G., I
    Fischer, S. A.
    Fonari, A.
    Fruechtl, H.
    Gagliardi, L.
    Garza, J.
    Gawande, N.
    Ghosh, S.
    Glaesemann, K.
    Goetz, A. W.
    Hammond, J.
    Helms, V
    Hermes, E. D.
    Hirao, K.
    Hirata, S.
    Jacquelin, M.
    Jensen, L.
    Johnson, B. G.
    [J]. JOURNAL OF CHEMICAL PHYSICS, 2020, 152 (18)
  • [3] TURBOMOLE: Modular program suite for ab initio quantum-chemical and condensed-matter simulations
    Balasubramani, Sree Ganesh
    Chen, Guo P.
    Coriani, Sonia
    Diedenhofen, Michael
    Frank, Marius S.
    Franzke, Yannick J.
    Furche, Filipp
    Grotjahn, Robin
    Harding, Michael E.
    Haettig, Christof
    Hellweg, Arnim
    Helmich-Paris, Benjamin
    Holzer, Christof
    Huniar, Uwe
    Kaupp, Martin
    Khah, Alireza Marefat
    Khani, Sarah Karbalaei
    Mueller, Thomas
    Mack, Fabian
    Nguyen, Brian D.
    Parker, Shane M.
    Perlt, Eva
    Rappoport, Dmitrij
    Reiter, Kevin
    Roy, Saswata
    Rueckert, Matthias
    Schmitz, Gunnar
    Sierka, Marek
    Tapavicza, Enrico
    Tew, David P.
    van Wuellen, Christoph
    Voora, Vamsee K.
    Weigend, Florian
    Wodynski, Artur
    Yu, Jason M.
    [J]. JOURNAL OF CHEMICAL PHYSICS, 2020, 152 (18)
  • [4] Hole-hole Tamm-Dancoff-approximated density functional theory: A highly efficient electronic structure method incorporating dynamic and static correlation
    Bannwarth, Christoph
    Yu, Jimmy K.
    Hohenstein, Edward G.
    Martinez, Todd J.
    [J]. JOURNAL OF CHEMICAL PHYSICS, 2020, 153 (02)
  • [5] GFN2-xTB-An Accurate and Broadly Parametrized Self-Consistent Tight-Binding Quantum Chemical Method with Multipole Electrostatics and Density-Dependent Dispersion Contributions
    Bannwarth, Christoph
    Ehlert, Sebastian
    Grimme, Stefan
    [J]. JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2019, 15 (03) : 1652 - 1671
  • [6] A simplified time-dependent density functional theory approach for electronic ultraviolet and circular dichroism spectra of very large molecules
    Bannwarth, Christoph
    Grimme, Stefan
    [J]. COMPUTATIONAL AND THEORETICAL CHEMISTRY, 2014, 1040 : 45 - 53
  • [7] Simplifications in the Generation and Transformation of Two-Electron Integrals in Molecular Calculations
    Beebe, Nelson H. F.
    Linderberg, Jan
    [J]. INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY, 1977, 12 (04) : 683 - 705
  • [8] Benchmark and performance of long-range corrected time-dependent density functional tight binding (LC-TD-DFTB) on rhodopsins and light-harvesting complexes
    Bold, Beatrix M.
    Sokolov, Monja
    Maity, Sayan
    Wanko, Marius
    Dohmen, Philipp M.
    Kranz, Julian J.
    Kleinekathoefer, Ulrich
    Hoefener, Sebastian
    Elstner, Marcus
    [J]. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2020, 22 (19) : 10500 - 10518
  • [9] A generally applicable atomic-charge dependent London dispersion correction
    Caldeweyher, Eike
    Ehlert, Sebastian
    Hansen, Andreas
    Neugebauer, Hagen
    Spicher, Sebastian
    Bannwarth, Christoph
    Grimme, Stefan
    [J]. JOURNAL OF CHEMICAL PHYSICS, 2019, 150 (15)
  • [10] Extension of the D3 dispersion coefficient model
    Caldeweyher, Eike
    Bannwarth, Christoph
    Grimme, Stefan
    [J]. JOURNAL OF CHEMICAL PHYSICS, 2017, 147 (03)