论文标题

玻璃过渡的现代计算研究

Modern computational studies of the glass transition

论文作者

Berthier, Ludovic, Reichman, David R.

论文摘要

经过数十年的努力,玻璃过渡和无定形材料的物理学继续引起广泛的研究社区的关注。自上世纪分子动力学和蒙特卡洛模拟出现以来,已经对超冷的液体和眼镜进行了数值研究。计算机研究大大增强了实验发现和理论发展,并构成了一个积极且不断扩大的研究领域。我们在这篇评论中的目标是对这一领域提供现代观点。我们描述了超越规范方法来攻击一个问题的需求,该问题在时间尺度,长度尺度和物理可观察物方面众所周知。我们首先概述了最新的算法开发,以使用复制品交换方法,群集和交换蒙特卡洛算法以及其他技术来实现增强的采样和更快的平衡。然后,我们回顾了这些新型工具对液体到玻璃过渡以及玻璃固体的机械,振动和热性能的统计机械描述所提供的一些重大进展。我们终于描述了未来研究的一些重要挑战。

The physics of the glass transition and amorphous materials continues to attract the attention of a wide research community after decades of effort. Supercooled liquids and glasses have been studied numerically since the advent of molecular dynamics and Monte Carlo simulations in the last century. Computer studies have greatly enhanced both experimental discoveries and theoretical developments and constitute an active and continually expanding research field. Our goal in this review is to provide a modern perspective on this area. We describe the need to go beyond canonical methods to attack a problem that is notoriously difficult in terms of time scales, length scales, and physical observables. We first summarise recent algorithmic developments to achieve enhanced sampling and faster equilibration using replica exchange methods, cluster and swap Monte Carlo algorithms, and other techniques. We then review some major recent advances afforded by these novel tools regarding the statistical mechanical description of the liquid-to-glass transition as well as the mechanical, vibrational and thermal properties of the glassy solid. We finally describe some important challenges for future research.

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