Electro-optic response of bipolar nematic liquid crystal confined in oblate spheroid

Chenjing Yang, Ran Chen, Leyun Feng, Rui Zhang, D. Chen
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引用次数: 1

Abstract

Electro-optic response of liquid crystals (LCs) relies on the molecular reorientation of LCs under external electric field and is important for a wide spectrum of applications. Here, we uncover an interesting electro-optic response of 5CB nematic LC confined in an oblate spheroid and subjected to external electric field. Under the planar anchoring, the nematic LC spheroid adopts a bipolar structure with the bipolar axis laid in the horizontal film plane. When a threshold electric field EF, is applied, the bipolar structure reorients from the horizontal configuration (LC molecules align along long axis direction) to the vertical configuration (LC molecules align along short axis direction), involving the competition of elastic energy, surface anchoring energy and electric field energy. In contrast to bipolar nematic LC droplets, the vertical configuration does not relax to the low-energy horizontal configuration after removing E; we argue that is due to the oblate shape of the nematic LC spheroid, which traps the bipolar structure in a local energy minimum. We use continuum simulation to demonstrate the detailed response and the reorientation dynamics of bipolar nematic spheroids under E field, showing consistent results with the experiments and confirming the proposed switching mechanism. Nevertheless, the vertical configuration of the bipolar structure could relax to the low-energy horizontal configuration by thermal cycling. Our studies provide clear experimental results that show the characteristics of the electro-optic response of oblate LC spheroids, which have both fundamental and practical implications.
双极向列液晶在扁球体内的电光响应
液晶的电光响应依赖于液晶在外加电场作用下的分子重定向,具有广泛的应用前景。在这里,我们发现了一个有趣的5CB向列LC的电光响应限制在一个扁圆球体和受外电场。在平面锚定作用下,向列LC椭球体采用双极结构,双极轴位于水平膜平面上。当施加阈值电场EF时,双极结构从水平构型(LC分子沿长轴方向排列)重新定向到垂直构型(LC分子沿短轴方向排列),涉及弹性能、表面锚定能和电场能的竞争。与双极向列LC液滴相比,去除E后,垂直构型不会松弛为低能水平构型;我们认为这是由于向列LC球体的扁圆形状,使双极结构处于局部能量最小值。我们用连续体模拟的方法对双极向列球体在E场下的详细响应和重定向动力学进行了验证,结果与实验结果一致,证实了所提出的开关机制。然而,通过热循环,双极结构的垂直构型可以松弛为低能水平构型。我们的研究提供了清晰的实验结果,显示了扁圆LC球的电光响应特性,具有基础和实际意义。
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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