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

机译:无自旋精确两分量理论中自旋轨道耦合的摄动处理

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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 Hg-201 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. (c) 2014 AIP Publishing LLC.
机译:这项工作涉及在其单电子变体(SFX2C-1e)的无自旋精确两成分理论中对自旋轨道耦合(SOC)效应的摄动处理。我们研究了两种构造SFX2C-1e SOC矩阵的方案:SFX2C-1e + SOC [der]方案基于SFX2C-1e解析-微分理论定义SOC矩阵元素,从而将SOC积分视为微扰。 SFX2C-1e + SOC [fd]方案将X2C-1e和SFX2C-1e哈密顿矩阵之差作为SOC扰动。此外,在SFX2C-1e框架中制定并实施了一种平均场方法,以有效地包含两电子SOC效应。还提出并仔细评估了对双电子SOC积分的系统近似。基于对一组双原子分子的能量和电性质的二阶SOC校正的基准计算,我们表明SFX2C-1e + SOC [der]方案在微扰SOC校正的计算中表现非常好,忽略(SS | SS)型双电子SOC积分的“ 2eSL”方案既有效又准确。相反,事实证明,SFX2C-1e + SOC [fd]方案与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SFX2C-1e耦合簇计算并获得了二阶SOC校正的结果,对最近表征的氢化乙基汞(HHgCH2CH3)分子的Hg-201四极耦合参数进行了高精度计算。使用SFX2C-1e + SOC [der] / 2eSL方案在Hartree-Fock级别上运行。 (c)2014 AIP Publishing LLC。

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