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首页> 外文期刊>Technical physics >Thermal polarization properties of thick anisotropic diffraction holograms recorded in polymer-dispersed liquid crystals
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Thermal polarization properties of thick anisotropic diffraction holograms recorded in polymer-dispersed liquid crystals

机译:聚合物分散液晶中记录的厚各向异性衍射全息图的热极化特性

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摘要

The diffraction and polarization properties of thick anisotropic holographic gratings recorded in polymer-dispersed liquid crystals are studied experimentally and theoretically. Such gratings are anisotropic and sensitive to temperature variations and also exhibit a strong dependence of the diffraction properties on the incident radiation polarization because of the presence of liquid-crystal molecules. The dependences of the diffraction efficiency and diffracted beam polarization orientation on the diffraction grating temperature and incident beam linear polarization are obtained for the case of Bragg incidence. The same dependences are derived using the known experimental temperature curves of the liquid crystal permittivity. The experimental data are in agreement with the theoretical calculations. The feasibility of controlling the diffraction characteristics of the grating in a wide temperature interval is demonstrated.
机译:实验和理论研究了聚合物分散液晶中记录的厚各向异性全息光栅的衍射和偏振特性。这样的光栅是各向异性的并且对温度变化敏感,并且由于液晶分子的存在,还表现出衍射特性对入射辐射偏振的强烈依赖性。对于布拉格入射,获得了衍射效率和衍射光束偏振取向与衍射光栅温度和入射光束线性偏振的关系。使用已知的液晶介电常数实验温度曲线得出相同的依赖性。实验数据与理论计算吻合。证明了在宽温度区间内控制光栅衍射特性的可行性。

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