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盒装分子动力学:去相关时间尺度与动力学主方程

Boxed Molecular Dynamics: Decorrelation Time Scales and the Kinetic Master Equation.

作者信息

Glowacki David R, Paci Emanuele, Shalashilin Dmitrii V

机构信息

Centre for Computational Chemistry, University of Bristol , Bristol BS8 1TS, United Kingdom.

Institute of Molecular and Cellular Biology, University of Leeds , Leeds LS2 9JT, United Kingdom.

出版信息

J Chem Theory Comput. 2011 May 10;7(5):1244-52. doi: 10.1021/ct200011e. Epub 2011 Apr 19.

Abstract

A number of methods proposed in the past few years have been aimed at accelerating the sampling of rare events in molecular dynamics simulations. We recently introduced a method called Boxed Molecular Dynamics (BXD) for accelerating the calculation of thermodynamics and kinetics ( J. Phys. Chem. B 2009 , 113 , 16603 - 16611 ). BXD relies upon confining the system in a series of adjacent "boxes" by inverting the projection of the system velocities along the reaction coordinate. The potential of mean force along the reaction coordinate is obtained from the mean first passage times (MFPTs) for exchange between neighboring boxes, simultaneously providing both kinetics and thermodynamics. In this paper, we investigate BXD in the context of its natural relation to a kinetic master equation and show that the BXD first passage times (FPTs) include different time scales-a fast short time decay due to correlated dynamical motion and slower long time decay arising from phase space diffusion. Correcting the FPTs to remove the fast correlated motion yields accurate thermodynamics and master equation kinetics. We also discuss interrelations between BXD and a recently described Markovian milestoning technique and use a simple application to show that, despite each method producing distinct nonstatistical effects on time scales on the order of dynamical decorrelation, both yield similar long-time kinetics.

摘要

在过去几年里提出的许多方法旨在加速分子动力学模拟中稀有事件的采样。我们最近引入了一种称为盒装分子动力学(BXD)的方法来加速热力学和动力学的计算(《物理化学杂志B》2009年,113卷,16603 - 16611页)。BXD通过反转系统速度沿反应坐标的投影,将系统限制在一系列相邻的“盒子”中。沿反应坐标的平均力势可从相邻盒子间交换的平均首次通过时间(MFPTs)获得,同时提供动力学和热力学信息。在本文中,我们在BXD与动力学主方程的自然关系背景下研究BXD,并表明BXD首次通过时间(FPTs)包含不同的时间尺度——由于相关动力学运动导致的快速短时间衰减以及相空间扩散引起的较慢长时间衰减。校正FPTs以去除快速相关运动可得到准确的热力学和主方程动力学。我们还讨论了BXD与最近描述的马尔可夫里程碑技术之间的相互关系,并通过一个简单应用表明,尽管每种方法在动力学去相关量级的时间尺度上产生不同的非统计效应,但两者都产生相似的长时间动力学。

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