【2h】

Waltzing route toward double-helix formation in cholesteric shells

机译:胆甾醇壳中双螺旋形成的Waltzing途径

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摘要

Liquid crystals, when confined to a spherical shell, offer fascinating possibilities for producing artificial mesoscopic atoms, which could then self-assemble into materials structured at a nanoscale, such as photonic crystals or metamaterials. The spherical curvature of the shell imposes topological constraints in the molecular ordering of the liquid crystal, resulting in the formation of defects. Controlling the number of defects, that is, the shell valency, and their positions, is a key success factor for the realization of those materials. Liquid crystals with helical cholesteric order offer a promising, yet unexplored way of controlling the shell defect configuration. In this paper, we study cholesteric shells with monovalent and bivalent defect configurations. By bringing together experiments and numerical simulations, we show that the defects appearing in these two configurations have a complex inner structure, as recently reported for simulated droplets. Bivalent shells possess two highly structured defects, which are composed of a number of smaller defect rings that pile up through the shell. Monovalent shells have a single radial defect, which is composed of two nonsingular defect lines that wind around each other in a double-helix structure. The stability of the bivalent configuration against the monovalent one is controlled by c = h/p, where h is the shell thickness and p the cholesteric helical pitch. By playing with the shell geometry, we can trigger the transition between the two configurations. This transition involves a fascinating waltz dynamics, where the two defects come closer while turning around each other.
机译:当液晶被限制在球形壳中时,它为产生人工介观原子提供了引人入胜的可能性,然后这些原子可以自组装成纳米级结构的材料,例如光子晶体或超材料。壳的球形曲率在液晶的分子顺序上施加了拓扑约束,从而导致缺陷的形成。控制缺陷的数量(即壳的化合价及其位置)是实现这些材料的关键成功因素。具有螺旋胆甾醇顺序的液晶提供了控制壳缺陷构型的有前途但尚未探索的方法。在本文中,我们研究具有单价和二价缺陷构型的胆甾型壳。通过结合实验和数值模拟,我们表明出现在这两种配置中的缺陷具有复杂的内部结构,如最近针对模拟液滴的报道。二价壳具有两个高度结构化的缺陷,它们由堆积在壳中的许多较小的缺陷环组成。单价壳具有单个径向缺陷,该缺陷由两条以双螺旋结构彼此缠绕的非奇异缺陷线组成。二价构型相对于一价构型的稳定性由c = h / p来控制,其中h是壳厚度,p是胆甾型螺旋螺距。通过处理壳的几何形状,我们可以触发两种配置之间的过渡。这种转变涉及迷人的华尔兹动力学,其中两个缺陷在彼此转弯时变得更近。

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