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Monte Carlo method for computing density of states and quench probability of potential energy and enthalpy landscapes

机译:蒙特卡罗方法,用于计算状态密度以及势能和焓景观的猝灭概率

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摘要

The thermodynamics and kinetics of a many-body system can be described in terms of a potential energy landscape in multidimensional configuration space. The partition function of such a landscape can be written in terms of a density of states, which can be computed using a variety of Monte Carlo techniques. In this paper, a new self-consistent Monte Carlo method for computing density of states is described that uses importance sampling and a multiplicative update factor to achieve rapid convergence. The technique is then applied to compute the equilibrium quench probability of the various inherent structures (minima) in the landscape. The quench probability depends on both the potential energy of the inherent structure and the volume of its corresponding basin in configuration space. Finally, the methodology is extended to the isothermal-isobaric ensemble in order to compute inherent structure quench probabilities in an enthalpy landscape. (C) 2007 American Institute of Physics.
机译:多体系统的热力学和动力学可以用多维配置空间中的势能图来描述。可以根据状态密度来写出这种景观的分区函数,可以使用多种蒙特卡洛技术来计算状态密度。本文介绍了一种新的自洽蒙特卡洛方法,用于计算状态密度,该方法使用重要性采样和乘性更新因子来实现快速收敛。然后将该技术应用于计算景观中各种固有结构(最小值)的平衡猝灭概率。失超概率既取决于固有结构的势能,又取决于其在构造空间中的相应盆地的体积。最后,该方法扩展到等温-等压系综,以便计算焓场中固有的结构猝灭概率。 (C)2007美国物理研究所。

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