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通过辅助密度展开高效处理局部元广义梯度密度泛函:密度拟合J + X近似

Efficient Treatment of Local Meta-generalized Gradient Density Functionals via Auxiliary Density Expansion: The Density Fitting J + X Approximation.

作者信息

Bienvenu Alyssa V, Knizia Gerald

机构信息

Department of Chemistry , The Pennsylvania State University , University Park , Pennsylvania 16802 , United States.

出版信息

J Chem Theory Comput. 2018 Mar 13;14(3):1297-1303. doi: 10.1021/acs.jctc.7b01083. Epub 2018 Feb 7.

Abstract

We report an efficient technique to treat density functionals of the meta-generalized gradient approximation (mGGA) class in conjunction with density fitting of Coulomb terms (DF-J) and exchange-correlation terms (DF-X). While the kinetic energy density τ cannot be computed in the context of a DF-JX calculation, we show that the Laplacian of the density υ can be computed with almost no extra cost. With this technique, υ-form mGGAs become only slightly more expensive (10%-20%) than GGAs in DF-JX treatment-and several times faster than regular τ-based mGGA calculations with DF-J and regular treatment of the density functional. We investigate the translation of υ-form mGGAs into τ-form mGGAs by employing a kinetic energy functional but find this insufficiently reliable at this moment. However, υ and τ are believed to carry essentially equivalent information beyond ρ and ||∇ρ|| ( Phys. Rev. B 2007 , 75 , 155109 , DOI: 10.1103/PhysRevB.75.155109 ), so a reparametrization of accurate mGGAs from the τ-form into the υ-form should be possible. Once such functionals become available, we expect the presented technique to become a powerful tool in the computation of reaction paths, intermediates, and transition states of medium sized molecules.

摘要

我们报告了一种有效的技术,用于处理元广义梯度近似(mGGA)类的密度泛函,并结合库仑项(DF-J)和交换相关项(DF-X)的密度拟合。虽然在DF-JX计算的背景下无法计算动能密度τ,但我们表明可以几乎不增加额外成本地计算密度的拉普拉斯算子υ。通过这种技术,在DF-JX处理中,υ形式的mGGA仅比GGA略微昂贵(10%-20%),并且比使用DF-J和常规密度泛函处理的基于τ的常规mGGA计算快几倍。我们通过使用动能泛函研究了υ形式的mGGA向τ形式的mGGA的转换,但发现目前这还不够可靠。然而,人们认为υ和τ携带的信息在本质上超出了ρ和||∇ρ||(《物理评论B》2007年,75卷,155109页,DOI: 10.1103/PhysRevB.75.155109),所以将精确的mGGA从τ形式重新参数化为υ形式应该是可行的。一旦获得这样的泛函,我们预计所提出的技术将成为计算中等大小分子的反应路径、中间体和过渡态的有力工具。

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