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τ 依赖型交换关联泛函的电流依赖性对核屏蔽计算的影响。

Effect of the Current Dependence of Tau-Dependent Exchange-Correlation Functionals on Nuclear Shielding Calculations.

作者信息

Schattenberg Caspar Jonas, Kaupp Martin

机构信息

Institut für Chemie, Theoretische Chemie/Quantenchemie, Technische Universität Berlin, Sekr. C7, Straße des 17. Juni 135, D-10623 Berlin, Germany.

出版信息

J Chem Theory Comput. 2021 Mar 9;17(3):1469-1479. doi: 10.1021/acs.jctc.0c01223. Epub 2021 Feb 25.

Abstract

Exchange-correlation functionals that depend on the local kinetic energy τ are widely used in many fields. This includes meta-generalized gradient approximation (GGA) functionals and their global hybrid versions as well as local hybrid functionals with τ-dependent local mixing functions to determine position-dependent exact-exchange admixture. Under the influence of an external magnetic field, τ becomes dependent on the gauge of the magnetic vector potential and should thus be extended to a gauge-invariant formulation. The currently most widely used extension for nuclear shielding calculations is that suggested by Maximoff and Scuseria (Maximoff, S. N.; Scuseria, G. E. . . . , , 408). Using the recent first implementation of local hybrids in this framework, we have found unphysical paramagnetic contributions, which are most clearly identified for atoms but are also present in molecules. These τ artifacts are small for the TPSS or TPSSh functionals, significantly deshielding in the case of nonhydrogen nuclei for the M06-L and M06 functionals and significantly shielding in those cases for the first-generation τ-dependent local hybrids LH07t-SVWN and LH12ct-SsifPW92. We have therefore implemented an extension of a linear-response nuclear shielding code to the proper current-density functional version of τ suggested by Dobson (Dobson, J. F. . . . , , 8870). Using τ eliminates the gauge dependence as well as the unphysical contributions introduced by τ. A first evaluation of this implementation for a set of main-group nuclear shieldings against CCSD(T) benchmark data indicates rather small effects for the TPSS and TPSSh functionals but significant changes for the other functionals studied: the previously observed remarkable performance of the highly parameterized meta-GGA functional M06-L is found to be the result of error compensation with the lack of an explicit current dependence. Results for the M06 functional are improved somewhat but are still overall of relatively low accuracy. In contrast, too low proton shieldings found recently for τ-dependent local hybrids are improved significantly within the τ current-density functional framework while preserving the outstanding performance of these functionals for other nuclei.

摘要

依赖于局部动能τ的交换关联泛函在许多领域中被广泛使用。这包括元广义梯度近似(GGA)泛函及其全局杂化版本,以及具有依赖于τ的局部混合函数的局部杂化泛函,用于确定位置相关的精确交换混合。在外部磁场的影响下,τ变得依赖于磁矢势的规范,因此应扩展为规范不变的形式。目前在核屏蔽计算中使用最广泛的扩展是由马克西莫夫和斯库西亚提出的(马克西莫夫,S. N.;斯库西亚,G. E.……,,408)。使用该框架中局部杂化的最新首次实现,我们发现了非物理的顺磁贡献,这在原子中最为明显,但在分子中也存在。这些τ伪影对于TPSS或TPSSh泛函较小,对于M06-L和M06泛函,在非氢核的情况下会显著去屏蔽,而对于第一代依赖于τ的局部杂化LH07t-SVWN和LH12ct-SsifPW92,在这些情况下会显著屏蔽。因此,我们将线性响应核屏蔽代码扩展到了多布森提出的τ的适当电流密度泛函版本(多布森,J. F.……,,8870)。使用τ消除了规范依赖性以及由τ引入的非物理贡献。针对一组主族核屏蔽与CCSD(T)基准数据对该实现进行的首次评估表明,对于TPSS和TPSSh泛函影响相当小,但对于所研究的其他泛函有显著变化:高度参数化的元GGA泛函M06-L先前观察到的显著性能被发现是由于缺乏明确的电流依赖性导致的误差补偿结果。M06泛函的结果有所改善,但总体精度仍然相对较低。相比之下,最近发现的依赖于τ的局部杂化的质子屏蔽过低在τ电流密度泛函框架内得到了显著改善,同时保留了这些泛函对其他核的出色性能。

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