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Non-Condon nonequilibrium Fermi's golden rule rates from the linearized semiclassical method

机译:非公寓非核心Fermi从线性化半透明方法中的金色规则率

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The nonequilibrium Fermi's golden rule describes the transition between a photoexcited bright donor electronic state and a dark acceptor electronic state, when the nuclear degrees of freedom start out in a nonequilibrium state. In a previous paper [X. Sun and E. Geva, J. Chem. Theory Comput. 12, 2926 (2016)], we proposed a new expression for the nonequilibrium Fermi's golden rule within the framework of the linearized semiclassical approximation and based on the Condon approximation, according to which the electronic coupling between donor and acceptor is assumed constant. In this paper we propose a more general expression, which is applicable to the case of non-Condon electronic coupling. We test the accuracy of the new non-Condon nonequilibrium Fermi's golden rule linearized semiclassical expression on a model where the donor and acceptor potential energy surfaces are parabolic and identical except for shifts in the equilibrium energy and geometry, and the coupling between them is linear in the nuclear coordinates. Since non-Condon effects may or may not give rise to conical intersections, both possibilities are examined by considering the following: (1) A modified Garg-Onuchic-Ambegaokar model for charge transfer in the condensed phase, where the donor-acceptor coupling is linear in the primary-mode coordinate, and for which non-Condon effects do not give rise to a conical intersection; (2) the linear vibronic coupling model for electronic transitions in gas phase molecules, where non-Condon effects give rise to conical intersections. We also present a comprehensive comparison between the linearized semiclassical expression and a progression of more approximate expressions, in both normal and inverted regions, and over a wide range of initial nonequilibrium states, temperatures, and frictions. Published by AIP Publishing.
机译:非QuiBribrium的金色规则描述了当核自由度以非核状状态启动时,采用光屏蔽的明亮供体电子状态和暗接受电子状态之间的过渡。在前面的论文中[X. Sun和E. Geva,J.Chem。理论计算。 12,2926(2016)]中,我们提出了一种新的表达对于非平衡费米黄金定则线性化的半经典近似的框架内,并根据该近似康登,根据该假设供体和受体之间的电子耦合常数。在本文中,我们提出了一种更一般的表达,这适用于非坦克电子耦合的情况。我们测试新的非坦康非QuigiBriaM fermi的金色规则线性化半导体表达式的准确性在施主和受体潜在能量表面是抛物线的典型和相同之外,除了平衡能量和几何形状,它们之间的耦合是线性的核协调。由于非公共效应可能或可能不会产生锥形交叉口,因此通过考虑以下内容来检查两种可能性:(1)改进的Garg-Onuchic-Ambegaokar模型用于冷凝阶段的电荷转移,其中供体受体耦合在主要模式坐标中线性,并且不带来非公共效应不会产生锥形交叉口; (2)气相分子电子转型线性振动耦合模型,非公路效应引起锥形交叉口。我们还在正常和倒置区域中的线性化半化表达和更近似表达的进展之间进行了全面的比较,以及在各种初始非Quibibribrium,温度和摩擦范围内。通过AIP发布发布。

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