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适用于量子蒙特卡罗计算的3d过渡金属能量一致小核赝势

Energy-consistent small-core pseudopotentials for 3d-transition metals adapted to quantum Monte Carlo calculations.

作者信息

Burkatzki M, Filippi Claudia, Dolg M

机构信息

Institute for Theoretical Chemistry, University of Cologne, Greinstr. 4, 50939 Cologne, Germany.

出版信息

J Chem Phys. 2008 Oct 28;129(16):164115. doi: 10.1063/1.2987872.

Abstract

We extend our recently published set of energy-consistent scalar-relativistic Hartree-Fock pseudopotentials by the 3d-transition metal elements, scandium through zinc. The pseudopotentials do not exhibit a singularity at the nucleus and are therefore suitable for quantum Monte Carlo (QMC) calculations. The pseudopotentials and the accompanying basis sets (VnZ with n=T,Q) are given in standard Gaussian representation and their parameter sets are presented. Coupled cluster, configuration interaction, and QMC studies are carried out for the scandium and titanium atoms and their oxides, demonstrating the good performance of the pseudopotentials. Even though the choice of pseudopotential form is motivated by QMC, these pseudopotentials can also be employed in other quantum chemical approaches.

摘要

我们将最近发表的一组能量一致的标量相对论Hartree-Fock赝势扩展到了3d过渡金属元素,从钪到锌。这些赝势在原子核处不表现出奇异性,因此适用于量子蒙特卡罗(QMC)计算。赝势以及与之配套的基组(n=T、Q时的VnZ)以标准高斯表示给出,并展示了它们的参数集。对钪原子、钛原子及其氧化物进行了耦合簇、组态相互作用和QMC研究,证明了这些赝势的良好性能。尽管赝势形式的选择是出于QMC的考虑,但这些赝势也可用于其他量子化学方法。

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