Python(编程语言)
计算机科学
工作流程
互操作性
计算
软件
计算科学
耦合簇
密度泛函理论
量子化学
理论计算机科学
程序设计语言
计算化学
化学
物理
超分子化学
量子力学
分子
数据库
操作系统
作者
Daniel G. A. Smith,Lori A. Burns,Andrew C. Simmonett,Robert M. Parrish,Matthew Schieber,Raimondas Galvelis,Peter Kraus,Holger Kruse,Roberto Di Remigio,Asem Alenaizan,Andrew M. James,Susi Lehtola,Jonathon P. Misiewicz,Maximilian Scheurer,Robert A. Shaw,Jeffrey B. Schriber,Yi Xie,Zachary L. Glick,Dominic A. Sirianni,Joseph O'Brien
标识
DOI:10.26434/chemrxiv.11930031.v1
摘要
Psi4 is a free and open-source ab initio electronic structure program providing Hartree–Fock, density functional theory, many-body perturbation theory, configuration interaction, density cumulant theory, symmetry-adapted perturbation theory, and coupled-cluster theory. Most of the methods are quite efficient thanks to density fitting and multi-core parallelism. The program is a hybrid of C++ and Python, and calculations may be run with very simple text files or using the Python API, facilitating post-processing and complex workflows; method developers also have access to most of Psi4’s core functionality via Python. Job specification may be passed using The Molecular Sciences Software Institute (MolSSI) QCSchema data format, facilitating interoperability. A rewrite of our top-level computation driver, and concomitant adoption of the MolSSI QCArchive Infrastructure project, make the latest version of Psi4 well suited to distributed computation of large numbers of independent tasks. The project has fostered the development of independent software components that may be reused in other quantum chemistry programs.
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