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Transition-state recrossing dynamics in activated rate processes

机译:活化速率过程中的过渡态交叉反应动力学

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摘要

In the framework of the transition state theory (TST), the rate of thermally activated escapes from a locally stable state in phase space is determined by the unidirectional flux through a conveniently chosen dividing surface. It is known that the occurrence of trajectories that recross this surface renders the true rate smaller than the TST rate by the so-called transmission factor. By means of a statistical theory we show how the mean number of recrossings can be related to the transmission factor. Formulas are derived for the average number of recrossings at the top of a parabolic barrier and through an energy surface in phase space. The former case is relevant for the spatial diffusion regime and the latter for the energy diffusion regime. The resulting transmission factors are in good agreement with the exact ones.
机译:在过渡状态理论(TST)的框架中,相空间中局部稳定状态中热活化逸出的速率由通过方便选择的分隔面的单向通量确定。已知的是,穿过该表面的轨迹的出现使得真实速率比TST速率小了所谓的透射因子。通过统计理论,我们说明了平均重交次数如何与传输因子相关。推导了在抛物线形障碍的顶部并且通过相空间中的能量表面的平均重穿过次数的公式。前一种情况与空间扩散机制有关,而后者与能量扩散机制有关。由此产生的传输因子与确切的传输因子非常吻合。

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