Polymer-dispersed liquid crystals forming tunable microlens

P. Maksimyak, A. Maksimyak, A. Nehrych
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Abstract

At present, liquid crystals – polymer (LC-P) composites such as polymer-dispersed liquid crystals (PDLC), polymer stabilized liquid crystals (PSLC) and polymer networks in liquid crystals (PNLC) are widely used as operating elements of optical devices such as microlens and elements, whose principle of operation is based on light scattering. LC-P composites light refraction features depend on shape and size of liquid crystal (LC) drops as well as on director orientation inside of drops. LC anisotropy influences polarization characteristics of refracted radiation. We have investigated desined as the tunable microlens on LC-P with different components concentration ratio. We have used LC E7 by Merck, dispersed in the polymer NOA 65 by Norland Inc. as the object of research. They have close refractive indeces which provide the posibility to shange the focal length of such LC lens in wide range. We change focal length by change of applied voltage and by rotation of polarization plane of illuminating beam. Partial beams passed through LC droplets and polymer matrix may be considered as plane waves passing different optical pathes and interfering in the far zone. Changing the voltage results in changing the LC effective refractive index leading to a change of the path difference between the interfering beams. The effect of interference decreases of some spectral components of the radiation passing through LC-P sample can be used as a tunable chromatic lens.
聚合物分散液晶形成可调谐微透镜
目前,聚合物分散液晶(PDLC)、聚合物稳定液晶(PSLC)、液晶中聚合物网络(PNLC)等液晶-聚合物(LC-P)复合材料被广泛应用于微透镜、微元件等光学器件的工作元件,其工作原理基于光散射。LC- p复合材料的光折射特性不仅与液晶液滴的形状和大小有关,还与液滴内部的定向方向有关。LC的各向异性影响折射辐射的偏振特性。我们研究了在不同组分浓度比的LC-P上设计可调微透镜。我们以分散在Norland公司的聚合物noa65中的默克公司的LC E7作为研究对象。它们具有较近的折射率,这为在大范围内改变这种LC透镜的焦距提供了可能。通过改变外加电压和照明光束偏振面旋转来改变焦距。通过LC液滴和聚合物基体的部分光束可以看作是通过不同光路的平面波,在远区发生干涉。电压的改变导致LC有效折射率的改变,从而导致干涉光束间程差的变化。通过LC-P样品的辐射中某些光谱成分的干涉减少效应可以用作可调色度透镜。
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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