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Electron transfer dynamics: Zusman equation versus exact theory

机译:电子传输动力学:祖斯曼方程与精确理论

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The Zusman equation has been widely used to study the effect of solvent dynamics on electron transfer reactions. However, application of this equation is limited by the classical treatment of the nuclear degrees of freedom. In this paper, we revisit the Zusman equation in the framework of the exact hierarchical equations of motion formalism, and show that a high temperature approximation of the hierarchical theory is equivalent to the Zusman equation in describing electron transfer dynamics. Thus the exact hierarchical formalism naturally extends the Zusman equation to include quantum nuclear dynamics at low temperatures. This new finding has also inspired us to rescale the original hierarchical equations and incorporate a filtering algorithm to efficiently propagate the hierarchical equations. Numerical exact results are also presented for the electron transfer reaction dynamics and rate constant calculations.
机译:Zusman方程已被广泛用于研究溶剂动力学对电子转移反应的影响。但是,该方程的应用受到核自由度经典处理的限制。在本文中,我们在运动形式主义的精确分层方程的框架内重新研究了Zusman方程,并表明在描述电子传递动力学时,分层理论的高温近似等效于Zusman方程。因此,确切的层级形式主义自然地将Zusman方程扩展为包括低温下的量子核动力学。这一新发现也启发了我们重新缩放原始的层次方程式,并引入了一种过滤算法来有效地传播层次方程式。还给出了数字精确结果,用于电子转移反应动力学和速率常数计算。

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