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Change in Stripes for Cholesteric Shells via Anchoring in Moderation

机译:通过适度锚定通过锚固晶体的条纹变化

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Chirality, ubiquitous in complex biological systems, can be controlled and quantified in synthetic materials such as cholesteric liquid crystal (CLC) systems. In this work, we study spherical shells of CLC under weak anchoring conditions. We induce anchoring transitions at the inner and outer boundaries using two independent methods: by changing the surfactant concentration or by raising the temperature close to the clearing point. The shell confinement leads to new states and associated surface structures: a state where large stripes on the shell can be filled with smaller, perpendicular substripes, and a focal conic domain (FCD) state, where thin stripes wrap into at least two, topologically required, double spirals. Focusing on the latter state, we use a Landau–de Gennes model of the CLC to simulate its detailed configurations as a function of anchoring strength. By abruptly changing the topological constraints on the shell, we are able to study the interconversion between director defects and pitch defects, a phenomenon usually restricted by the complexity of the cholesteric phase. This work extends the knowledge of cholesteric patterns, structures that not only have potential for use as intricate, self-assembly blueprints but are also pervasive in biological systems.
机译:可以在胆甾型液晶(CLC)系统中的合成材料中控制和定量络合生物系统中普遍存在的性感的手性。在这项工作中,我们在弱锚定条件下研究了CLC的球形壳。我们诱导使用两个独立方法在内界和外边界处的锚定转变:通过改变表面活性剂浓度或通过将靠近清算点的温度提高。壳体限制导致新的状态和相关表面结构:壳体上的大条纹的状态可以填充具有较小的,垂直的底屑和焦点锥形域(FCD)状态,其中薄条纹包裹成至少两个,拓扑所需双螺旋。专注于后一种状态,我们使用CLC的Landau-de Gennes模型模拟其详细配置作为锚固力量的函数。通过突然改变壳体上的拓扑限制,我们能够研究导演缺陷和俯仰缺陷之间的互连,通常受胆甾相的复杂性限制的现象。这项工作延伸了胆甾型图案的知识,不仅具有主要用作复杂的自组装蓝图的可能性,而且在生物系统中也普遍存在。

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