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Derivation of spin-orbit couplings in collinear linear-response TDDFT : a rigorous formulation.

机译:共线线性响应TDDFT中自旋轨道耦合的推导:一个严格的公式。

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摘要

Using an approach based upon a set of auxiliary many-electron wavefunctions we present a rigorous derivation of spin-orbit coupling (SOC) within the framework of linear-response time-dependent density functional theory (LR-TDDFT). Our method is based on a perturbative correction of the non-relativistic collinear TDDFT equations using a Breit-Pauli spin-orbit Hamiltonian. The derivation, which is performed within both the Casida and Sternheimer formulations of LR-TDDFT, is valid for any basis set. The requirement of spin noncollinearity for the treatment of spin-flip transitions is also discussed and a possible alternative solution for the description of these transitions in the collinear case is also proposed. Our results are validated by computing the SOC matrix elements between singlet and triplet states of two molecules, formaldehyde and acetone. In both cases, we find excellent agreement with benchmark calculations performed with a high level correlated wavefunction method.
机译:使用基于一组辅助多电子波函数的方法,我们在线性响应时变密度泛函理论(LR-TDDFT)的框架内提出了自旋轨道耦合(SOC)的严格推导。我们的方法基于使用Breit-Pauli自旋轨道哈密顿量的非相对论共线性TDDFT方程的摄动校正。在LR-TDDFT的Casida和Sternheimer公式中进行的推导对于任何基集均有效。还讨论了自旋非共线性对自旋翻转转换的要求,并提出了在共线情况下描述这些转换的可能替代解决方案。我们的结果通过计算甲醛和丙酮这两个分子的单重态和三重态之间的SOC矩阵元素得到了验证。在这两种情况下,我们都发现与使用高级相关波函数方法进行的基准计算非常吻合。

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