Parrish Robert M, Burns Lori A, Smith Daniel G A, Simmonett Andrew C, DePrince A Eugene, Hohenstein Edward G, Bozkaya Uğur, Sokolov Alexander Yu, Di Remigio Roberto, Richard Ryan M, Gonthier Jérôme F, James Andrew M, McAlexander Harley R, Kumar Ashutosh, Saitow Masaaki, Wang Xiao, Pritchard Benjamin P, Verma Prakash, Schaefer Henry F, Patkowski Konrad, King Rollin A, Valeev Edward F, Evangelista Francesco A, Turney Justin M, Crawford T Daniel, Sherrill C David
Center for Computational Molecular Science and Technology, School of Chemistry and Biochemistry, School of Computational Science and Engineering, Georgia Institute of Technology , Atlanta, Georgia 30332-0400, United States.
National Institutes of Health , National Heart, Lung and Blood Institute, Laboratory of Computational Biology, 5635 Fishers Lane, T-900 Suite, Rockville, Maryland 20852, United States.
J Chem Theory Comput. 2017 Jul 11;13(7):3185-3197. doi: 10.1021/acs.jctc.7b00174. Epub 2017 Jun 6.
Psi4 is an ab initio electronic structure program providing methods such as Hartree-Fock, density functional theory, configuration interaction, and coupled-cluster theory. The 1.1 release represents a major update meant to automate complex tasks, such as geometry optimization using complete-basis-set extrapolation or focal-point methods. Conversion of the top-level code to a Python module means that Psi4 can now be used in complex workflows alongside other Python tools. Several new features have been added with the aid of libraries providing easy access to techniques such as density fitting, Cholesky decomposition, and Laplace denominators. The build system has been completely rewritten to simplify interoperability with independent, reusable software components for quantum chemistry. Finally, a wide range of new theoretical methods and analyses have been added to the code base, including functional-group and open-shell symmetry adapted perturbation theory, density-fitted coupled cluster with frozen natural orbitals, orbital-optimized perturbation and coupled-cluster methods (e.g., OO-MP2 and OO-LCCD), density-fitted multiconfigurational self-consistent field, density cumulant functional theory, algebraic-diagrammatic construction excited states, improvements to the geometry optimizer, and the "X2C" approach to relativistic corrections, among many other improvements.
Psi4是一个从头算电子结构程序,提供诸如哈特里-福克、密度泛函理论、组态相互作用和耦合簇理论等方法。1.1版本是一次重大更新,旨在使复杂任务自动化,例如使用完备基组外推法或焦点方法进行几何优化。将顶级代码转换为Python模块意味着Psi4现在可以与其他Python工具一起用于复杂的工作流程中。借助提供对密度拟合、Cholesky分解和拉普拉斯分母等技术轻松访问的库,添加了几个新功能。构建系统已完全重写,以简化与用于量子化学的独立、可重用软件组件的互操作性。最后,代码库中添加了广泛的新理论方法和分析,包括官能团和开壳层对称适配微扰理论、带冻结自然轨道的密度拟合耦合簇、轨道优化微扰和耦合簇方法(例如,OO-MP2和OO-LCCD)、密度拟合多组态自洽场、密度累积量泛函理论、代数图示构造激发态、几何优化器的改进以及相对论修正的“X2C”方法等等。