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An analysis of isomorphic RPMD in the golden rule limit

机译:黄金规则限制中的同构rpmd分析

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We analyze the golden rule limit of the recently proposed isomorphic ring polymer (iso-RP) method. This method aims to combine an exact expression for the quantum mechanical partition function of a system with multiple electronic states with a pre-existing mixed quantum-classical (MQC) dynamics approximation, such as fewest switches surface hopping. Since the choice of the MQC method adds a degree of flexibility, we simplify the analysis by assuming that the dynamics used correctly reproduces the exact golden rule rate for a nonadiabatic (e.g., electron transfer) reaction in the high temperature limit. Having made this assumption, we obtain an expression for the iso-RP rate in the golden rule limit that is valid at any temperature. We then compare this rate with the exact rate for a series of simple spin-boson models. We find that the iso-RP method does not correctly predict how nuclear quantum effects affect the reaction rate in the golden rule limit. Most notably, it does not capture the quantum asymmetry in a conventional (Marcus) plot of the logarithm of the reaction rate against the thermodynamic driving force, and it also significantly overestimates the correct quantum mechanical golden rule rate for activationless electron transfer reactions. These results are analyzed and their implications discussed for the applicability of the iso-RP method to more general nonadiabatic reactions. Published under license by AIP Publishing.
机译:我们分析最近提出的同构环聚合物(ISO-RP)方法的黄金规则限制。该方法旨在将具有多个电子状态的系统的量子机械分区功能组合,其中具有预先存在的混合量子 - 经典(MQC)动力学近似,例如最少的开关表面跳跃。由于MQC方法的选择增加了灵活性,因此通过假设使用的动态正确地再现了高温限制的非等离性(例如,电子转移)反应的动态来简化分析。制定了这种假设,我们在任何温度下都有有效的金色规则限制中获得了ISO-RP速率的表达。然后,我们将此速率与一系列简单的自旋玻色子型号的确切速度进行比较。我们发现ISO-RP方法无法正确预测核量子效应如何影响黄金规则限制的反应速率。最值得注意的是,它不会捕获反应速率对数的常规(MARCUS)曲线图中的量子不对称性,并且它也显着高估了用于活化电子转移反应的正确量子机械金色规则率。分析了这些结果及其对ISO-RP方法适用于更一般的非抗反应性的影响。通过AIP发布在许可证下发布。

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