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A UNIFIED FRAMEWORK FOR QUANTUM ACTIVATED RATE PROCESSES .1. GENERAL THEORY

机译:量子激活速率过程的统一框架1。一般理论

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It is shown that several existing quantum reaction rate theories can be unified around a single mathematical framework. These theories include the high temperature parabolic barrier approximation, the instanton approach, and the path integral quantum transition state theory. In particular, it is shown that the quantum reactive flux can be approximated as a product of a simple frequency factor times the imaginary part of the barrier partition function. The latter term arises from the steepest descent solution to the partition function in the barrier region, while the prefactor can he interpreted as the frequency of the stationary barrier trajectory. Importantly, the analysis introduces the imaginary time Feynman path centroid variable into the expression for the quantum activated rate constant in an a priori way. The present theoretical framework also allows for an analytical treatment of the quantum activated rate problem in the vicinity of the crossover temperature, and for a generalization of the saddle point analysis in an extended-dimensional quantum mechanical space of the Fourier path modes. (C) 1996 American Institute of Physics. [References: 69]
机译:结果表明,几个现有的量子反应速率理论可以围绕一个数学框架统一起来。这些理论包括高温抛物线势垒近似,瞬时方法和路径积分量子跃迁状态理论。特别地,示出了量子反应性通量可以近似为简单频率因子乘以势垒分配函数的虚部的乘积。后一项来自障碍区域中分配函数的最速下降解决方案,而前置因子可以解释为固定障碍轨道的频率。重要的是,该分析以先验的方式将虚拟时间费曼路径质心变量引入到量子活化速率常数的表达式中。本理论框架还允许对交叉温度附近的量子活化速率问题进行分析处理,并允许对傅立叶路径模式的扩展维量子力学空间中的鞍点分析进行推广。 (C)1996年美国物理研究所。 [参考:69]

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