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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Modeling of ultrafast electron-transfer dynamics: multi-level Redfield theory and validity of approximations
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Modeling of ultrafast electron-transfer dynamics: multi-level Redfield theory and validity of approximations

机译:超快电子转移动力学建模:多级Redfield理论和近似值的有效性

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摘要

The short-time electron-transfer (EF) dynamics following short-pulse optical excitation is investigated for representative models by numerical reduced density-matrix calculations. The multi-level Redfield-theory equations are solved for two-site models up to three strongly coupled reaction modes, which are weakly coupled to a dissipative environment. The so-called normal and inverted regimes of ET and stationary as well as nonstationary initial-state preparation are considered. The simulations illustrate the importance of electronic backflow in the case of strong electronic coupling and the effect of coherent vibrational wave-packet motion on the ET process. Three approximations, which have widely been used in ET modeling, are tested against the Redfield-theory results: the golden rule (GR) formula for nonadiabatic electron transfer, the secular approximation to the Redfield tensor and the diabatic-damping approximation (DDA) (neglect of the electronic interstate coupling in the construction of the Redfield tensor). The results illustrate the breakdown of the GR formula with increasing electronic coupling strength and the failure of the secular approximation for coherently driven ET. It is found that the DDA can provide a surprisingly accurate description of ultrafast ET processes when the zero-order vibrational levels are nearly in resonance. It is demonstrated by a benchmark calculation for a three-mode ET that the near-resonance condition is generally fulfilled for multi-mode models in the inverted regime.
机译:通过数值简化密度矩阵计算,对代表性模型研究了短脉冲光激发后的短时电子传输(EF)动力学。对于两个站点的模型,求解多达三个强耦合反应模式的多级Redfield理论方程,这些反应模式与耗散环境弱耦合。考虑了所谓的正常和倒置的ET和静止状态以及非平稳初始状态准备状态。仿真说明了在强电子耦合的情况下电子回流的重要性以及相干振动波包运动对ET过程的影响。针对Redfield理论的结果测试了已在ET建模中广泛使用的三个近似值:非绝热电子转移的黄金法则(GR)公式,Redfield张量的长期近似和非绝热阻尼近似(DDA)(在Redfield张量的构造中忽略了电子州际耦合)。结果表明,随着电子耦合强度的增加,GR公式的分解以及相干驱动的ET的长期近似失效。发现当零阶振动水平几乎共振时,DDA可以提供超快ET过程的令人惊讶的准确描述。通过针对三模式ET的基准计算证明,在倒置状态下,多模式模型通常满足近共振条件。

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