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首页> 外文期刊>The Journal of Chemical Physics >Order-parameter-based Monte Carlo simulation of crystallization
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Order-parameter-based Monte Carlo simulation of crystallization

机译:基于订单参数的蒙特卡洛结晶模拟

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摘要

A Monte Carlo simulation method is presented for simulation of phase transitions, with emphasis on the study of crystallization. The method relies on a random walk in order parameter Phi(q(N)) space to calculate a free energy profile between the two coexisting phases. The energy and volume data generated over the course of the simulation are subsequently reweighed to identify the precise conditions for phase coexistence. The usefulness of the method is demonstrated in the context of crystallization of a purely repulsive Lennard-Jones system. A systematic analysis of precritical and critical nuclei as a function of supercooling reveals a gradual change from a bcc to a fcc structure inside the crystalline nucleus as it grows at large degrees of supercooling. The method is generally applicable and is expected to find applications in systems for which two or more coexisting phases can be distinguished through one or more order parameters. (c) 2006 American Institute of Physics.
机译:提出了一种用于模拟相变的蒙特卡洛模拟方法,重点是结晶研究。该方法依赖于随机步入顺序参数Phi(q(N))空间来计算两个共存相之间的自由能分布。随后对在模拟过程中生成的能量和体积数据进行重新称重,以识别相位共存的精确条件。在纯斥力Lennard-Jones系统的结晶过程中证明了该方法的有效性。对前临界和临界核作为过冷函数的系统分析显示,随着核在大程度的过冷度增长,其晶核内部的bcc结构逐渐从fcc转变为fcc。该方法通常是适用的,并且有望在可以通过一个或多个阶数参数区分两个或多个共存阶段的系统中找到应用。 (c)2006年美国物理研究所。

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