Faradjian Anton K, Elber Ron
Department of Computer Science, Cornell University, Ithaca, New York 14853, USA.
J Chem Phys. 2004 Jun 15;120(23):10880-9. doi: 10.1063/1.1738640.
An algorithm is presented to compute time scales of complex processes following predetermined milestones along a reaction coordinate. A non-Markovian hopping mechanism is assumed and constructed from underlying microscopic dynamics. General analytical analysis, a pedagogical example, and numerical solutions of the non-Markovian model are presented. No assumption is made in the theoretical derivation on the type of microscopic dynamics along the reaction coordinate. However, the detailed calculations are for Brownian dynamics in which the velocities are uncorrelated in time (but spatial memory remains).
提出了一种算法,用于计算沿着反应坐标遵循预定里程碑的复杂过程的时间尺度。假定存在一种非马尔可夫跳跃机制,并根据潜在的微观动力学构建该机制。给出了非马尔可夫模型的一般分析、一个教学示例以及数值解。在理论推导中,未对沿反应坐标的微观动力学类型做出假设。然而,详细计算是针对布朗动力学进行的,其中速度在时间上不相关(但空间记忆仍然存在)。