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Theoretical modeling of heterogeneous LC systems: nano-suspensions and polymer stabilized LC lens

机译:异质LC系统的理论建模:纳米悬浮液和聚合物稳定LC透镜

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Heterogeneous liquid crystal (LC) systems are a new class of anisotropic materials which have been intensively studied over the last decade. This article is concerned with two such systems: ferroelectric LC nano-suspensions and LCs with polymer network. The significant implication of ferroelectric LC-colloids is the possibility of a significant reduction in the threshold electric Fredericksz voltage. Here we present a theory of this phenomenon, which agrees qualitatively with experiment. A second example of heterogeneous LC systems is a gradient-polymer-stabilized LC (G-PSLC) structure, which has been proposed for a tunable-focus lens application. We report on theoretical model that describes the dependence of the G-PSLC lens focal length on applied voltage. A previous model is improved by considering light absorption during the polymerization. Again we find qualitative agreement with the experimental data.
机译:异质液晶(LC)系统是在过去十年中被密集地研究的新类各向异性材料。本文涉及两个这样的系统:铁电LC纳米悬浮液和具有聚合物网络的LCS。铁电LC胶体的显着含义是阈值电力架电压的显着降低的可能性。在这里,我们提出了这种现象的理论,这与实验同意。异构LC系统的第二个例子是梯度聚合物稳定的LC(G-PSLC)结构,已经提出用于可调聚焦镜头应用。我们报告了描述G-PSLC透镜焦距对施加电压的依赖性的理论模型。通过考虑聚合过程中的光吸收来改善先前的模型。我们再次找到与实验数据的定性协议。

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