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Real time propagation of the exact two component time-dependent density functional theory

机译:精确的两分量时变密度泛函理论的实时传播

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We report the development of a real time propagation method for solving the time-dependent relativistic exact two-component density functional theory equations (RT-X2C-TDDFT). The method is fundamentally non-perturbative and may be employed to study nonlinear responses for heavy elements which require a relativistic Hamiltonian. We apply the method to several group 12 atoms as well as heavy-element hydrides, comparing with the extensive theoretical and experimental studies on this system, which demonstrates the correctness of our approach. Because the exact two-component Hamiltonian contains spin-orbit operators, the method is able to describe the non-zero transition moment of otherwise spin-forbidden processes in non-relativistic theory. Furthermore, the two-component approach is more cost effective than the full four-component approach, with similar accuracy. The RT-X2C-TDDFT will be useful in future studies of systems containing heavy elements interacting with strong external fields. Published by AIP Publishing.
机译:我们报告了实时传播方法的发展,用于求解时间相关的相对论精确的两分量密度泛函理论方程(RT-X2C-TDDFT)。该方法基本上是非摄动的,可用于研究需要相对论哈密顿量的重元素的非线性响应。与对该系统的大量理论和实验研究相比较,我们将该方法应用于12个第12组原子以及重元素氢化物,这证明了我们方法的正确性。由于精确的两分量哈密顿量包含自旋轨道算子,因此该方法能够描述非相对论中原本禁止自旋的过程的非零跃迁矩。此外,两成分方法比完整的四成分方法更具成本效益,且准确性相似。 RT-X2C-TDDFT将在包含重元素与强外部场相互作用的系统的未来研究中很有用。由AIP Publishing发布。

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