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针对不同输入轨道和本征值优化的Kohn-Sham相关能,采用σ泛函实现化学精度。

Chemical accuracy with σ-functionals for the Kohn-Sham correlation energy optimized for different input orbitals and eigenvalues.

作者信息

Fauser Steffen, Trushin Egor, Neiss Christian, Görling Andreas

机构信息

Lehrstuhl für Theoretische Chemie, Universität Erlangen-Nürnberg, Egerlandstr. 3, D-91 058 Erlangen, Germany.

出版信息

J Chem Phys. 2021 Oct 7;155(13):134111. doi: 10.1063/5.0059641.

Abstract

Recently, a new type of orbital-dependent functional for the Kohn-Sham (KS) correlation energy, σ-functionals, was introduced. Technically, σ-functionals are closely related to the well-known direct random phase approximation (dRPA). Within the dRPA, a function of the eigenvalues σ of the frequency-dependent KS response function is integrated over purely imaginary frequencies. In σ-functionals, this function is replaced by one that is optimized with respect to reference sets of atomization, reaction, transition state, and non-covalent interaction energies. The previously introduced σ-functional uses input orbitals and eigenvalues from KS calculations with the generalized gradient approximation (GGA) exchange-correlation functional of Perdew, Burke, and Ernzerhof (PBE). Here, σ-functionals using input orbitals and eigenvalues from the meta-GGA TPSS and the hybrid-functionals PBE0 and B3LYP are presented and tested. The number of reference sets taken into account in the optimization of the σ-functionals is larger than in the first PBE based σ-functional and includes sets with 3d-transition metal compounds. Therefore, also a reparameterized PBE based σ-functional is introduced. The σ-functionals based on PBE0 and B3LYP orbitals and eigenvalues reach chemical accuracy for main group chemistry. For the 10 966 reactions from the highly accurate W4-11RE reference set, the B3LYP based σ-functional exhibits a mean average deviation of 1.03 kcal/mol compared to 1.08 kcal/mol for the coupled cluster singles doubles perturbative triples method if the same valence quadruple zeta basis set is used. For 3d-transition metal chemistry, accuracies of about 2 kcal/mol are reached. The computational effort for the post-self-consistent evaluation of the σ-functional is lower than that of a preceding PBE0 or B3LYP calculation for typical systems.

摘要

最近,一种用于科恩-沙姆(KS)相关能的新型轨道依赖泛函——σ-泛函被引入。从技术上讲,σ-泛函与著名的直接随机相位近似(dRPA)密切相关。在dRPA中,频率依赖的KS响应函数的本征值σ的函数在纯虚频率上进行积分。在σ-泛函中,该函数被一个针对原子化、反应、过渡态和非共价相互作用能的参考集进行优化的函数所取代。先前引入的σ-泛函使用来自KS计算的输入轨道和本征值,其交换关联泛函采用佩德韦、伯克和恩泽霍夫(PBE)的广义梯度近似(GGA)。在此,展示并测试了使用来自元GGA的TPSS以及杂化泛函PBE0和B3LYP的输入轨道和本征值的σ-泛函。在σ-泛函的优化中考虑的参考集数量比第一个基于PBE的σ-泛函更多,并且包括含3d过渡金属化合物的集合。因此,还引入了一种重新参数化的基于PBE的σ-泛函。基于PBE0和B3LYP轨道及本征值的σ-泛函在主族化学中达到了化学精度。对于来自高精度W4 - 11RE参考集的10966个反应,如果使用相同的价四重ζ基组,基于B3LYP的σ-泛函的平均绝对偏差为1.03 kcal/mol,而耦合簇单双激发微扰三重激发方法的平均绝对偏差为1.08 kcal/mol。对于3d过渡金属化学,达到了约2 kcal/mol的精度。对于典型系统,σ-泛函的自洽后评估的计算量低于之前的PBE0或B3LYP计算。

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