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首页> 外文期刊>The Journal of Chemical Physics >Simulating structural transitions by direct transition current sampling: The example of LJ38
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Simulating structural transitions by direct transition current sampling: The example of LJ38

机译:通过直接转换电流采样模拟结构转换:LJ38的示例

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摘要

Reaction paths and probabilities are inferred, in a usual Monte Carlo or molecular dynamic simulation, directly from the evolution of the positions of the particles. The process becomes time-consuming in many interesting cases in which the transition probabilities are small. A radically different approach consists of setting up a computation scheme where the object whose time evolution is simulated is the transition current itself. The relevant timescale for such a computation is the one needed for the transition probability rate to reach a stationary level, and this is usually substantially shorter than the passage time of an individual system. As an example, we show, in the context of the benchmark case of 38 particles interacting via the Lennard-Jones potential (LJ_(38) cluster), how this method may be used to explore the reactions that take place between different phases, recovering efficiently known results, and uncovering new ones with small computational effort.
机译:在通常的Monte Carlo或分子动力学模拟中,直接从粒子位置的演变推断出反应路径和概率。在转换概率很小的许多有趣情况下,该过程变得很耗时。完全不同的方法包括建立一种计算方案,其中模拟其时间演变的对象是过渡电流本身。用于这种计算的相关时间标度是转变概率率达到固定水平所需的时间标度,通常通常比单个系统的通过时间短。例如,我们展示了在38个粒子通过Lennard-Jones势(LJ_(38)簇)相互作用的基准情况下,如何使用这种方法来探索不同相之间发生的反应,有效地已知结果,并以较小的计算量发现新结果。

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