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无自旋精确二分量理论中自旋轨道耦合的微扰处理

Perturbative treatment of spin-orbit coupling within spin-free exact two-component theory.

作者信息

Cheng Lan, Gauss Jürgen

机构信息

Institute for Theoretical Chemistry, Department of Chemistry and Biochemistry, The University of Texas at Austin, Austin, Texas 78712, USA.

Institut für Physikalische Chemie, Universität Mainz, D-55099 Mainz, Germany.

出版信息

J Chem Phys. 2014 Oct 28;141(16):164107. doi: 10.1063/1.4897254.

Abstract

This work deals with the perturbative treatment of spin-orbit-coupling (SOC) effects within the spin-free exact two-component theory in its one-electron variant (SFX2C-1e). We investigate two schemes for constructing the SFX2C-1e SOC matrix: the SFX2C-1e+SOC [der] scheme defines the SOC matrix elements based on SFX2C-1e analytic-derivative theory, hereby treating the SOC integrals as the perturbation; the SFX2C-1e+SOC [fd] scheme takes the difference between the X2C-1e and SFX2C-1e Hamiltonian matrices as the SOC perturbation. Furthermore, a mean-field approach in the SFX2C-1e framework is formulated and implemented to efficiently include two-electron SOC effects. Systematic approximations to the two-electron SOC integrals are also proposed and carefully assessed. Based on benchmark calculations of the second-order SOC corrections to the energies and electrical properties for a set of diatomic molecules, we show that the SFX2C-1e+SOC [der] scheme performs very well in the computation of perturbative SOC corrections and that the "2eSL" scheme, which neglects the (SS|SS)-type two-electron SOC integrals, is both efficient and accurate. In contrast, the SFX2C-1e+SOC [fd] scheme turns out to be incompatible with a perturbative treatment of SOC effects. Finally, as a first chemical application, we report high-accuracy calculations of the (201)Hg quadrupole-coupling parameters of the recently characterized ethylmercury hydride (HHgCH2CH3) molecule based on SFX2C-1e coupled-cluster calculations augmented with second-order SOC corrections obtained at the Hartree-Fock level using the SFX2C-1e+SOC [der]/2eSL scheme.

摘要

本工作涉及单电子变体(SFX2C-1e)的无自旋精确二分量理论中自旋轨道耦合(SOC)效应的微扰处理。我们研究了两种构建SFX2C-1e SOC矩阵的方案:SFX2C-1e+SOC [der]方案基于SFX2C-1e解析导数理论定义SOC矩阵元,从而将SOC积分视为微扰;SFX2C-1e+SOC [fd]方案将X2C-1e和SFX2C-1e哈密顿矩阵之间的差异作为SOC微扰。此外,还在SFX2C-1e框架内制定并实施了一种平均场方法,以有效地纳入双电子SOC效应。还提出并仔细评估了双电子SOC积分的系统近似。基于对一组双原子分子能量和电学性质的二阶SOC修正的基准计算,我们表明SFX2C-1e+SOC [der]方案在微扰SOC修正的计算中表现非常出色,并且忽略(SS|SS)型双电子SOC积分的“2eSL”方案既高效又准确。相比之下,SFX2C-1e+SOC [fd]方案被证明与SOC效应的微扰处理不兼容。最后,作为第一个化学应用,我们报告了基于使用SFX2C-1e+SOC [der]/2eSL方案在哈特里-福克水平获得的二阶SOC修正增强的SFX2C-1e耦合簇计算,对最近表征的氢化乙基汞(HHgCH2CH3)分子的(201)Hg四极耦合参数进行的高精度计算。

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