Kosterlitz-Thouless-type caging-uncaging transition in a quasi-one-dimensional hard disk system

A. Huerta, T. Bryk, V. Pergamenshchik, A. Trokhymchuk
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引用次数: 12

Abstract

Molecular dynamics computer simulations of collective excitations in a system of hard disks confined to a narrow channel of the specific width, that resembles 2D triangular lattice at disk close packing, are performed. We found that transverse excitations, which for hard-disk system are absent in the limit of 1D and are of acoustic nature in the limit of 2D, in the case of q1D hard-disk system emerge in the form of transverse optical excitations and could be considered as a tool to detect the structural transition to a zigzag ordering. By analyzing density evolution of longitudinal static structure factor and pair distribution function we have shown that driving force of zigzag ordering is caging phenomenon that in the case of hard-disk system is governed by excluded volume interaction with first and second neighbors and is of entropic origin.
准一维硬盘系统的kosterlitz - thoulless型笼-开笼跃迁
分子动力学的计算机模拟集体激励在一个系统的硬盘限制在一个狭窄的通道的特定宽度,类似于二维三角形晶格在磁盘紧密包装,执行。我们发现,横向激励在一维极限下不存在,在二维极限下具有声学性质,而在q1D硬盘系统中以横向光学激励的形式出现,可以被认为是检测结构向之字形有序转变的工具。通过对纵向静力结构因子和对分布函数的密度演化分析,表明之字形排序的驱动力是笼化现象,在硬盘系统中,笼化现象受与第一邻域和第二邻域的排除体积相互作用支配,且具有熵源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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