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Molecular g-tensors from analytical response theory and quasi-degenerate perturbation theory in the framework of complete active space self-consistent field method

机译:完全活动空间自洽场方法框架下的解析响应理论和拟简摄动理论的分子g张量

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摘要

The molecular g-tensor is an important spectroscopic parameter provided by electron para magnetic resonance (EPR) measurement and often needs to be interpreted using computational methods. Here, we present two new implementations based on the first-order and second-order perturbation theories to calculate the g-tensors within the complete-active space self-consistent field (CASSCF) wave function model. In the first-order method, the quasi-degenerate perturbation theory (QDPT) is employed for constructing relativistic CASSCF states perturbed with the spin-orbit coupling operator, which is described effectively in one-electron form with the flexible nuclear screening spin-orbit approximation introduced recently by us. The second-order method is a newly reported approach built upon the linear response theory which accounts for the perturbation with respect to external magnetic field. It is implemented with the coupled-perturbed CASSCF (CP-CASSCF) approach, which provides an equivalent of untruncated sum-over-states expansion. The comparison of the performances between the first-order and second-order methods is shown for various molecules containing light to heavy elements, highlighting their relative strength and weakness. The formulations of QDPT and CP-CASSCF approaches as well as the derivation of the second-order Douglas-Kroll-Hess picture change of Zeeman operators are given in detail.
机译:分子g张量是电子顺磁共振(EPR)测量提供的重要光谱参数,通常需要使用计算方法来解释。在这里,我们提出基于一阶和二阶微扰理论的两个新实现,以计算完全活动空间自洽场(CASSCF)波函数模型中的g张量。在一阶方法中,采用准简并摄动理论(QDPT)构造受自旋轨道耦合算子扰动的相对论CASSCF状态,该状态以柔性电子筛选自旋轨道近似有效地描述为单电子形式。最近由我们介绍。二阶方法是一种新近报道的基于线性响应理论的方法,该方法考虑了相对于外部磁场的扰动。它是通过耦合摄动CASSCF(CP-CASSCF)方法实现的,该方法提供了等效的不截断求和状态扩展。显示了对包含轻到重元素的各种分子的一阶和二阶方法之间的性能比较,突出了它们的相对强弱。详细介绍了QDPT和CP-CASSCF方法的公式以及Zeeman算子的二阶Douglas-Kroll-Hess图片变化的推导。

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