FDTD analysis of 100% efficient polarization-independent liquid crystal polarization grating

C. Oh, Ravi K. Komanduri, M. Escuti
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引用次数: 3

Abstract

We report a numerical analysis of the liquid crystal polarization grating (LCPG) as an electro-optically controlled, polarization independent light modulator. The 2D finite-difference time-domain (FDTD) modeling for periodic anisotropic structures has been developed as a numerical tool to study optical properties of anisotropic gratings. Both normal and oblique incidence cases are successfully implemented for wide-band analysis. Nematic director profiles of the LCPG are obtained from elastic free-energy calculations using a commercial software tool, called LC3D. A study of the essential diffraction characteristics of the LCPG is presented, which manifests pixel-level light modulation with a nearly 100% efficiency on unpolarized light. The effect of an off-axis input and the grating regime on the LCPG diffraction is investigated. Finally, we present a study of the electro-optical response of the LCPG when an electric field applied for both static and dynamic cases. The FDTD results show that a highly efficient, polarization-independent light modulation with capability of an electrical switching/tuning is possible by the LCPG.
100%高效偏振无关液晶偏振光栅的时域有限差分分析
我们报告了液晶偏振光栅(LCPG)作为电光控制,偏振无关的光调制器的数值分析。周期性各向异性结构的二维时域有限差分(FDTD)模型是研究各向异性光栅光学特性的一种数值工具。正常和斜入射的情况下,成功地实现了宽带分析。LCPG的向列指向器剖面是通过使用商业软件工具LC3D进行弹性自由能计算获得的。对LCPG的基本衍射特性进行了研究,发现其对非偏振光具有接近100%的像素级光调制效率。研究了离轴输入和光栅结构对LCPG衍射的影响。最后,我们研究了在静态和动态电场作用下LCPG的电光响应。时域有限差分结果表明,LCPG可以实现具有电开关/调谐能力的高效、偏振无关的光调制。
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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