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迈向使用局域杂化泛函对核心性质进行正确处理。

Toward a correct treatment of core properties with local hybrid functionals.

作者信息

Haasler Matthias, Maier Toni M, Kaupp Martin

机构信息

Technische Universität Berlin, Institute of Chemistry Theoretical Chemistry/Quantum Chemistry, Berlin, Germany.

Technische Universität Braunschweig, Institute of Physical and Theoretical Chemistry, Braunschweig, Germany.

出版信息

J Comput Chem. 2023 Dec 15;44(32):2461-2477. doi: 10.1002/jcc.27211. Epub 2023 Aug 28.

Abstract

In local hybrid functionals (LHs), a local mixing function (LMF) determines the position-dependent exact-exchange admixture. We report new LHs that focus on an improvement of the LMF in the core region while retaining or partly improving upon the high accuracy in the valence region exhibited by the LH20t functional. The suggested new pt-LMFs are based on a Padé form and modify the previously used ratio between von Weizsäcker and Kohn-Sham local kinetic energies by different powers of the density to enable flexibly improved approximations to the correct high-density and iso-orbital limits relevant for the innermost core region. Using TDDFT calculations for a set of K-shell core excitations of second- and third-period systems including accurate state-of-the-art relativistic orbital corrections, the core part of the LMF is optimized, while the valence part is optimized as previously reported for test sets of atomization energies and reaction barriers (Haasler et al., J Chem Theory Comput 2020, 16, 5645). The LHs are completed by a calibration function that minimizes spurious nondynamical correlation effects caused by the gauge ambiguities of exchange-energy densities, as well as by B95c meta-GGA correlation. The resulting LH23pt functional relates to the previous LH20t functional but specifically improves upon the core region.

摘要

在局域杂化泛函(LHs)中,局域混合函数(LMF)决定了位置依赖的精确交换混合。我们报道了新的LHs,其专注于核心区域LMF的改进,同时保持或部分改进LH20t泛函在价层区域所展现的高精度。所建议的新的pt-LMF基于帕德形式,并通过密度的不同幂次修改先前使用的冯·魏茨泽克和科恩-沙姆局域动能之间的比率,以灵活改进与最内层核心区域相关的正确高密度和等轨道极限的近似值。使用含时密度泛函理论(TDDFT)计算第二和第三周期体系的一组K壳层核心激发,包括精确的最新相对论轨道修正,优化了LMF的核心部分,而价层部分则如先前针对原子化能和反应势垒测试集所报道的那样进行了优化(哈斯勒等人,《化学理论与计算杂志》,2020年,16卷,5645页)。通过一个校准函数完善了这些LHs,该函数可使由交换能密度的规范模糊性引起的虚假非动力学相关效应以及B95c元广义梯度近似(meta-GGA)相关效应最小化。所得的LH23pt泛函与先前的LH20t泛函相关,但特别改进了核心区域。

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