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Electron dynamics with real-time time-dependent density functional theory

机译:实时时变密度泛函理论的电子动力学

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Real-time time-dependent functional theory (RT-TDDFT) directly propagates the electron density in the time domain by integrating the time-dependent Kohn-Sham equations. This is in contrast to the popular linear response TDDFT matrix formulation that computes transition frequencies from a ground state reference. RT-TDDFT is, therefore, a potentially powerful technique for modeling atto- to picosecond electron dynamics, including charge transfer pathways, the response to a specific applied field, and frequency dependent linear and nonlinear properties. However, qualitatively incorrect electron dynamics and time-dependent resonant frequencies can occur when perturbing the density away from the ground state due to the common adiabatic approximation. An overview of the RT-TDDFT method is provided here, including examples of some cases that lead to this qualitatively incorrect behavior. (c) 2016 Wiley Periodicals, Inc.
机译:实时时变函数理论(RT-TDDFT)通过集成时变的Kohn-Sham方程直接在时域中传播电子密度。这与流行的线性响应TDDFT矩阵公式相反,后者从基态参考值计算跃迁频率。因此,RT-TDDFT是一种潜在的强大技术,可用于模拟皮秒级至皮秒级的电子动力学,包括电荷转移路径,对特定应用场的响应以及与频率有关的线性和非线性特性。但是,由于常见的绝热近似,当扰动密度远离基态时,可能会发生质上不正确的电子动力学和随时间变化的共振频率。此处提供了RT-TDDFT方法的概述,包括导致这种定性错误行为的某些情况的示例。 (c)2016年威利期刊有限公司

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