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Optically Addressed Liquid Crystalline Light Valves - Theory of their Operation and Applications

机译:光学寻址液晶光阀-其工作原理和应用

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We report on our research which is focused on developing liquid crystalline optically addressed light valves, their characterization, performances and drawbacks. We study various processes leading to creation of index grating in nematic liquid crystals by incident light. This can be done via molecular reorientation induced by intrinsic photoconductivity of the liquid crystal mixture or by use of semi-transparent photoconducting electrodes containing photochromic dyes. Depending on construction of liquid crystal panels, materials used or even external optical systems several useful optical devices have been constructed, like: phase conjugate mirrors, Fourier optical correlators for pattern recognition, coherent light amplifiers, incoherent-to-coherent light converters, etc. The physical description of these devices must involve the electrical transport properties of liquid crystal used (ion mobilities, photoconductivity, role of dyes and also resistivity of electrode materials, etc.), its optical and mechanical properties (birefringence, order parameter, light scattering, dynamics of molecular reorientation and index profile along the thickness).
机译:我们报告了我们的研究,该研究集中在开发液晶光学寻址光阀,其特性,性能和缺点。我们研究了导致入射光在向列型液晶中产生折射率光栅的各种过程。这可以通过由液晶混合物的固有光电导性引起的分子重新定向或通过使用包含光致变色染料的半透明光电导电极来完成。根据液晶面板的结构,所使用的材料或什至是外部光学系统,已经构造了几种有用的光学设备,例如:相位共轭镜,用于模式识别的傅立叶光学相关器,相干光放大器,不相干相干光转换器等。这些设备的物理描述必须涉及所用液晶的电传输特性(离子迁移率,光电导性,染料的作用以及电极材料的电阻率等),其光学和机械特性(双折射,有序参数,光散射,分子取向和沿厚度方向的折射率分布的动力学)。

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