Domain walls in vertically vibrated monolayers of cylinders confined in annuli

A. Armas, M. Maza-Cuello, Y. Martínez-Ratón, E. Velasco
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引用次数: 5

Abstract

Liquid-crystalline ordering in vertically vibrated granular monolayers confined in annuli of different sizes is examined. The annuli consist of circular cavities with a central circular obstruction. In the absence of the central obstruction cylinders of low aspect-ratio exhibit tetratic order, except for the existence of four defects which restore the symmetry broken by the circular confinement. This behaviour is demanded by topology in systems with strong anchoring properties at the surface. By contrast, topology dictates that the annular geometry is compatible with a distorted tetratic phase without point defects. However, the effect of restricted geometry and limited size on phases possessing finite anchoring energy at the wall and elastic stiffness leads to different configurations, showing finite ordered regions separated by domain walls. We argue that highly packed nonequilibrium vibrated granular monolayers respond to geometrical frustration and extreme confinement as corresponding equilibrium systems of particles do, and that the former can be analysed in terms of surface free energies, elastic distortions and defects, much as equilibrium liquid crystals. Therefore, selective confinement of vertically-vibrated monolayers of rods could be used with advantage as a new tool to study the creation and dynamics of various types of defects in ordered systems.
环空中圆柱体垂直振动单层中的畴壁
研究了不同尺寸环空中垂直振动颗粒单层的液晶有序性。环空由中心有圆形阻塞的圆形腔组成。在没有中心障碍物的情况下,低纵横比的圆柱体表现为四轴有序,除了存在四个缺陷,这些缺陷恢复了圆形约束所破坏的对称性。在具有强锚定特性的系统中,这种行为是拓扑结构所要求的。相比之下,拓扑结构决定了环形几何形状与没有点缺陷的扭曲四相相兼容。然而,有限的几何形状和有限的尺寸对具有有限锚固能量和弹性刚度的相的影响导致了不同的构型,显示出由畴壁分隔的有限有序区域。我们认为,高度堆积的非平衡振动颗粒单层与相应的粒子平衡系统一样,会响应几何挫折和极端限制,并且前者可以从表面自由能、弹性扭曲和缺陷方面进行分析,就像平衡液晶一样。因此,选择约束垂直振动的单层棒材可以作为研究有序体系中各种缺陷的产生和动力学的新工具。
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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