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Semiclassical Green's functions and an instanton formulation of electron-transfer rates in the nonadiabatic limit

机译:半绝热格林函数和非绝热极限中电子传输速率的瞬时公式

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摘要

We present semiclassical approximations to Green's functions of multidimensional systems, extending Gutzwiller's work to the classically forbidden region. Based on steepest-descent integrals over these functions, we derive an instanton method for computing the rate of nonadiabatic reactions, such as electron transfer, in the weak-coupling limit, where Fermi's golden-rule can be employed. This generalizes Marcus theory to systems for which the environment free-energy curves are not harmonic and where nuclear tunnelling plays a role. The derivation avoids using the Im F method or short-time approximations to real-time correlation functions. A clear physical interpretation of the nuclear tunnelling processes involved in an electron-transfer reaction is thus provided. In Paper II [J. O. Richardson, J. Chem. Phys. 143, 134116 (2015)], we discuss numerical evaluation of the formulae. (C) 2015 AIP Publishing LLC.
机译:我们提供了格林的多维系统功能的半经典近似,将古兹维勒的工作扩展到了经典的禁区。基于这些函数的最速下降积分,我们推导了一种瞬时方法,用于计算弱耦合极限中非绝热反应(例如电子转移)的速率,可以在其中使用费米的黄金法则。这将马库斯理论推广到环境自由能曲线不是谐波且核隧穿起作用的系统。该推导避免使用Im F方法或对实时相关函数的短期近似。因此,提供了对电子转移反应中涉及的核隧穿过程的清晰物理解释。在论文二中[J. O. Richardson,J. Chem。物理143,134116(2015)],我们讨论了该公式的数值评估。 (C)2015 AIP Publishing LLC。

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