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一种具有多个界面集的副本交换过渡界面采样方法,用于研究稀有事件网络。

A replica exchange transition interface sampling method with multiple interface sets for investigating networks of rare events.

作者信息

Swenson David W H, Bolhuis Peter G

机构信息

van 't Hoff Institute for Molecular Sciences, Universiteit van Amsterdam, PO Box 94157, 1090 GD Amsterdam, The Netherlands.

出版信息

J Chem Phys. 2014 Jul 28;141(4):044101. doi: 10.1063/1.4890037.

Abstract

The multiple state transition interface sampling (TIS) framework in principle allows the simulation of a large network of complex rare event transitions, but in practice suffers from convergence problems. To improve convergence, we combine multiple state TIS [J. Rogal and P. G. Bolhuis, J. Chem. Phys. 129, 224107 (2008)] with replica exchange TIS [T. S. van Erp, Phys. Rev. Lett. 98, 268301 (2007)]. In addition, we introduce multiple interface sets, which allow more than one order parameter to be defined for each state. We illustrate the methodology on a model system of multiple independent dimers, each with two states. For reaction networks with up to 64 microstates, we determine the kinetics in the microcanonical ensemble, and discuss the convergence properties of the sampling scheme. For this model, we find that the kinetics depend on the instantaneous composition of the system. We explain this dependence in terms of the system's potential and kinetic energy.

摘要

多状态跃迁界面采样(TIS)框架原则上允许模拟复杂稀有事件跃迁的大型网络,但在实际应用中存在收敛问题。为了提高收敛性,我们将多状态TIS[J. Rogal和P. G. Bolhuis,《化学物理杂志》129, 224107 (2008)]与副本交换TIS[T. S. van Erp,《物理评论快报》98, 268301 (2007)]相结合。此外,我们引入了多个界面集,这允许为每个状态定义多个序参量。我们在多个独立二聚体的模型系统上说明了该方法,每个二聚体有两个状态。对于具有多达64个微观状态的反应网络,我们确定了微正则系综中的动力学,并讨论了采样方案的收敛特性。对于该模型,我们发现动力学取决于系统的瞬时组成。我们根据系统的势能和动能来解释这种依赖性。

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