Birefringence-modulated total internal reflection in liquid crystal shells

N. Popov, J. Lagerwall
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引用次数: 1

Abstract

The combination of anisotropic boundary conditions and topological constraints acting on a spherical shell of nematic liquid crystal confined between aqueous phases gives rise to peculiar but well-defined configurations of the director field, and thus of the optic axis that defines the impact of the nematic birefringence. While the resulting optics of nematic shells has been extensively investigated in transmission, studies of the reflection behavior are scarce. Here we show that nematic shells exhibit specific light guiding paths mediated by birefringence-modulated total internal reflection (TIR) within the shell. With stabilizers promoting tangential boundary conditions, shells show immobile antipodal spots revealing the locations of maximum effective refractive index, but their intensity is modulated by the polarization of the illuminating light. With normal-aligning stabilizers, shells instead show bright arcs separated by dark spots, and these follow the rotation of the polarization of the illuminating light. Reflection polarizing microscopy thus offers a valuable complement to the more common characterization in transmission, adding data that can be helpful for accurately mapping out director fields in shells of any liquid crystal phase. Moreover, the TIR-mediated light guiding paths may offer interesting handles to localize photopolymerization of reactive liquid crystal shells or to dynamically modulate the response of light-triggered liquid crystal elastomer shell actuators.
液晶壳的双折射调制全内反射
各向异性边界条件和拓扑约束的结合作用于一个球形壳的向列液晶之间的水相限制产生了特殊的,但良好定义的配置的方向场,从而光轴,定义了向列双折射的影响。虽然由此产生的向列壳在传输方面的光学特性已经得到了广泛的研究,但对反射行为的研究却很少。在这里,我们表明,向列壳具有特定的光引导路径介导的双折射调制全内反射(TIR)在壳内。在稳定剂促进切向边界条件下,壳体显示出不动的对映点,显示出最大有效折射率的位置,但它们的强度受照明光的偏振调制。有了正常对准的稳定器,外壳反而显示出由黑点分开的明亮弧线,这些弧线跟随照明光的偏振旋转。因此,反射偏光显微镜为传输中更常见的表征提供了有价值的补充,增加了有助于准确绘制任何液晶相壳中的定向场的数据。此外,红外介导的光导路径可能为反应性液晶壳的局部光聚合或动态调节光触发液晶弹性体壳致动器的响应提供有趣的处理方法。
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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