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首页> 外文期刊>The Journal of Chemical Physics >Extending molecular dynamics time scales with milestoning: Example of complex kinetics in a solvated peptide
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Extending molecular dynamics time scales with milestoning: Example of complex kinetics in a solvated peptide

机译:通过里程碑扩展分子动力学时间尺度:溶剂化肽中复杂动力学的例子

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摘要

A recently introduced computational algorithm to extend time scales of atomically detailed simulations is illustrated. The algorithm, milestoning, is based on partitioning the dynamics to a sequence of trajectories between "milestones" and constructing a non-Markovian model for the motion along a reaction coordinate. The kinetics of a conformational transition in a blocked alanine is computed and shown to be accurate, more efficient than straightforward molecular dynamics by a factor of about 9, and nonexponential. A general scaling argument predicts a linear speedup with the number of milestones for diffusive processes and an exponential speedup for transitions over barriers. The algorithm is also trivial to parallelize. As a side result, milestoning also produces the free energy profile along the reaction coordinate and is able to describe nonequilibrium motions along one (or a few) degrees of freedom. (c) 2007 American Institute of Physics.
机译:说明了最近引入的用于扩展原子详细模拟的时间尺度的计算算法。里程碑算法是基于将动力学划分为“里程碑”之间的一系列轨迹,并为沿反应坐标的运动构建非马尔可夫模型的。计算了在封闭的丙氨酸中的构象转变的动力学,并且显示出比直接的分子动力学精确,高效,高出约9倍且非指数。一个一般的比例论证会预测线性加速,其中扩散过程具有里程碑数,而障碍越过则呈指数加速。该算法对并行化也是微不足道的。附带结果是,里程碑式反应还沿反应坐标生成了自由能分布,并能够描述沿一个(或几个)自由度的非平衡运动。 (c)2007年美国物理研究所。

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