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Enhanced Nonlinear Optical Effect in Hybrid Liquid Crystal Cells Based on Photonic Crystal

机译:基于光子晶体的混合液晶单元的增强非线性光学效应

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摘要

Nonlinear-optical response of photorefractive hybrid liquid crystal (LC) cells has been studied by means of dynamic holographic technique in two-wave mixing arrangement. The LC cells include nonuniform silicon substrates comprising a micrometer-range photonic crystal. A thin LC layer is set between silicon substrate and a flat glass substrate covered by a transparent (ITO) electrode. A dynamic diffraction grating was induced in the LC volume by the two-wave mixing of laser beams with simultaneous application of DC electric field to the cell. Theoretical model of Raman-Nath self-diffraction was developed. This model allows for calculation of nonlinear optical characteristics in thin samples on the base of two-wave mixing experimental data, and with taking into account light losses on absorption and/or scattering. The hybrid LC cells demonstrate strong nonlinear optical effect, prospective for many applications in electro-optical microsystems, such as SLMs, as well as in multi-channel systems.
机译:通过动态全息技术,在两波混合布置中研究了光折射混合液晶(LC)单元的非线性光学响应。 LC单元包括包含微米范围的光子晶体的非均匀硅衬底。在硅基板和被透明(ITO)电极覆盖的平板玻璃基板之间设置薄薄的LC层。通过在激光束的两波混合同时向细胞施加直流电场的情况下,在LC体积中产生了动态衍射光栅。建立了拉曼-纳特自衍射的理论模型。该模型允许在两波混合实验数据的基础上并考虑吸收和/或散射时的光损耗来计算薄样品中的非线性光学特性。混合LC单元显示出强大的非线性光学效应,有望在电光微系统(例如SLM)以及多通道系统中的许多应用中使用。

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