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Degenerate conic anchoring and colloidal elastic dipole-hexadecapole transformations

机译:简并圆锥锚固和胶态弹性偶极-十六极变换

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摘要

The defect structure associated with a colloid in a nematic liquid crystal is dictated by molecular orientation at the colloid surface. Perpendicular or parallel orientations to the surface lead to dipole-like or quadrupole-like defect structures. However, the so-called elastic hexadecapole discovered recently, has been assumed to result from a conic anchoring condition. In order to understand it at a fundamental level, a model for this anchoring is introduced here in the context of a Landau-de Gennes free energy functional. We investigate the evolution of defect configurations, as well as colloidal interactions, by tuning the preferred tilt angle (θe). The model predicts an elastic dipole whose stability decreases as θe increases, along with a dipole-hexadecapole transformation, which are confirmed by our experimental observations. Taken together, our results suggest that previously unanticipated avenues may exist for design of self-assembled structures via control of tilt angle.
机译:向列型液晶中与胶体有关的缺陷结构是由胶体表面的分子取向决定的。垂直于表面或平行于表面的方向会导致类似偶极或四极的缺陷结构。然而,已经假定最近发现的所谓的弹性十六极是由圆锥形锚固条件引起的。为了从根本上理解它,在Landau-de Gennes自由能源功能的背景下引入了这种锚固模型。我们通过调整首选倾斜角(θe)来研究缺陷构型的演变以及胶体相互作用。该模型预测了一个弹性偶极子,其稳定性随着θe的增加而降低,并伴随着偶极子到十六极子的转换,这已被我们的实验观察所证实。综上所述,我们的结果表明,通过控制倾斜角度,可能存在用于设计自组装结构的先前无法预料的途径。

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