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Zigzag line defects and manipulation of colloids in a nematic liquid crystal in microwrinkle grooves

机译:之字形线缺陷和微皱纹沟中向列液晶中胶体的操纵

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摘要

Spatially confined liquid crystals exhibit non-uniform alignment, often accompanied by self-organised topological defects of non-trivial shape in response to imposed boundary conditions and geometry. Here we show that a nematic liquid crystal, when confined in a sinusoidal microwrinkle groove, exhibits a new periodic arrangement of twist deformations and a zigzag line defect. This periodic ordering results from the inherent liquid crystal elastic anisotropy and the antagonistic boundary conditions at the flat liquid crystal–air and the curved liquid crystal–groove interfaces. The periodic structure can be tuned by controlling the groove geometry and the molecular chirality, which demonstrates the importance of boundary conditions and introduced asymmetry for the engineering of topological defects. Moreover, the kinks in the zigzag defects can trap small particles, which may afford a new method for manipulation of colloids. Our system, which uses easily fabricated microwrinkle grooves, provides a new microfabrication method based on the arrangement of controllable defects.
机译:空间受限的液晶表现出不均匀的取向,响应于施加的边界条件和几何形状,通常伴随有非平凡形状的自组织拓扑缺陷。在这里,我们表明,向列液晶被限制在正弦微皱纹凹槽中时,表现出扭曲变形和锯齿形线缺陷的新的周期性排列。这种周期性排序是由固有的液晶弹性各向异性和平面液晶-空气和曲面液晶-凹槽界面处的拮抗边界条件引起的。可以通过控制凹槽的几何形状和分子手性来调整周期性结构,这证明了边界条件的重要性,并引入了不对称性来处理拓扑缺陷。此外,锯齿形缺陷中的扭结会捕获小颗粒,这可能为胶体处理提供了一种新方法。我们的系统使用易于制造的微皱纹沟槽,基于可控缺陷的排列提供了一种新的微细加工方法。

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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