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  5. Quantum Chemistry Common Driver and Databases (QCDB) and Quantum Chemistry Engine (QCE<scp>ngine</scp>): Automation and interoperability among computational chemistry programs

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Article
en
2021

Quantum Chemistry Common Driver and Databases (QCDB) and Quantum Chemistry Engine (QCE<scp>ngine</scp>): Automation and interoperability among computational chemistry programs

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en
2021
Vol 155 (20)
Vol. 155
DOI: 10.1063/5.0059356

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Jan Hermann
Jan Hermann

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Rollin A. King
John F. Stanton
Mark S. Gordon
+45 more

Abstract

Community efforts in the computational molecular sciences (CMS) are evolving toward modular, open, and interoperable interfaces that work with existing community codes to provide more functionality and composability than could be achieved with a single program. The Quantum Chemistry Common Driver and Databases (QCDB) project provides such capability through an application programming interface (API) that facilitates interoperability across multiple quantum chemistry software packages. In tandem with the Molecular Sciences Software Institute and their Quantum Chemistry Archive ecosystem, the unique functionalities of several CMS programs are integrated, including CFOUR, GAMESS, NWChem, OpenMM, Psi4, Qcore, TeraChem, and Turbomole, to provide common computational functions, i.e., energy, gradient, and Hessian computations as well as molecular properties such as atomic charges and vibrational frequency analysis. Both standard users and power users benefit from adopting these APIs as they lower the language barrier of input styles and enable a standard layout of variables and data. These designs allow end-to-end interoperable programming of complex computations and provide best practices options by default.

How to cite this publication

Rollin A. King, John F. Stanton, Mark S. Gordon, Theresa L. Windus, C. David Sherrill, Lori A. Burns, Daniel G. A. Smith, Annabelle Lolinco, Zachary L. Glick, Jiyoung Lee, Asem Alenaizan, Taylor Barnes, Carlos H. Borca, Roberto Di Remigio, David Dotson, Sebastian Ehlert, Alexander G. Heide, Michael F. Herbst, Jan Hermann, Colton B. Hicks, Joshua T. Horton, Adrian G. Hurtado, Peter Kraus, Holger Kruse, Sebastian J. R. Lee, Jonathon P. Misiewicz, Levi N. Naden, Farhad Ramezanghorbani, Maximilian Scheurer, Jeffrey B. Schriber, Andrew C. Simmonett, Johannes Steinmetzer, Jeffrey Wagner, Logan Ward, Matthew Welborn, Doaa Altarawy, Jamshed Anwar, John D. Chodera, Andreas Dreuw, Heather J. Kulik, Fang Liu, Todd J. Martı́nez, Devin A. Matthews, Henry F. Schaefer, Jiřı́ Šponer, Justin M. Turney, Lee‐Ping Wang, Nuwan De Silva (2021). Quantum Chemistry Common Driver and Databases (QCDB) and Quantum Chemistry Engine (QCE<scp>ngine</scp>): Automation and interoperability among computational chemistry programs. , 155(20), DOI: https://doi.org/10.1063/5.0059356.

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Publication Details

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Article

Year

2021

Authors

48

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1063/5.0059356

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