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Trajectory surface hopping molecular dynamics simulation by spin-flip time-dependent density functional theory

机译:旋转表面跳跃分子动力学模拟通过旋转翻转时间依赖性密度函数理论

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This paper presents the nonadiabatic molecular dynamics simulation combined with the spin-flip time-dependent density functional theory (SF-TDDFT). In contrast to the conventional single-reference electronic structure methods, which have difficulty in describing the S-0/S-1 conical intersections, the SF-TDDFT can yield the correct topology of crossing points. Thus, one expects that the method can take naturally into account the S-1 -> S-0 nonadiabatic transitions. We adopt Tully's fewest switch surface hopping algorithm by introducing the analytic SF-TDDFT nonadiabatic coupling vector. We apply the proposed method to the photoisomerization reactions of E-azomethane, methanimine, and ethene molecules and reproduce the results of previous studies based on the multireference methods. The proposed approach overcomes the ad hoc treatment of S-1 -> S-0 transition at the single- reference calculation level and affords both the dynamics on the S-1 state and the recovery of the S-0 state with modest computational costs. Published under license by AlP Publishing.
机译:本文介绍了与旋转翻转时间依赖性密度功能理论(SF-TDDFT)相结合的非抗体分子动力学模拟。与传统的单引用电子结构方法相比,难以描述S-0 / S-1锥形交叉点,SF-TDDFT可以产生交叉点的正确拓扑。因此,人们期望该方法可以自然地考虑S-1 - > S-0非等级转变。通过引入分析SF-TDDFT非等压耦合载体,我们采用塔利最少的开关表面跳跃算法。我们将所提出的方法应用于E-偶氮甲烷,甲亚胺和乙烯分子的光致硅化反应,并基于多引用方法再现先前研究的结果。所提出的方法克服了单一参考计算水平的S-1 - > S-0转换的临时治疗,并为S-1状态的动态提供了与适度的计算成本中的S-0状态的恢复。通过ALP发布在许可下发布。

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