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Numerical Analysis of H-PDLC Using the Split-Field Finite-Difference Time-Domain Method

机译:H-PDLC的裂域有限差分时域法数值分析

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摘要

In this work, an accurate numerical modeling of the diffraction properties of transmission holographic polymer dispersed liquid crystal (H-PDLC) gratings is presented. The method considers ellipsoid geometry-based liquid crystal (LC) droplets with random properties regarding size and location across the H-PLDC layer and also the non-homogeneous orientation of the LC director within the droplet. The direction of the LC director inside the droplets can be varied to reproduce the effects of the external voltage applied in H-PDLC-based gratings. From the LC director distribution in the droplet, the permittivity tensor is defined, which establishes the optical anisotropy of the media, and it is used for numerically solving the light propagation through the system. In this work, the split-field finite-difference time-domain method (SF-FDTD) is applied. This method is suited for accurately analyzing periodic media, and it considers spatial and time discretisation of Maxwell’s equations. The scheme proposed here is used to investigate the influence on the diffraction properties of H-PDLC as a function of the droplets size and the bulk fraction of LC dispersed material.
机译:在这项工作中,提出了透射全息聚合物分散液晶(H-PDLC)光栅的衍射特性的精确数值模型。该方法考虑了基于椭圆几何形状的液晶(LC)小滴,这些小滴具有关于H-PLDC层上的大小和位置以及小滴内LC指向矢的非均匀取向的随机属性。可以改变液滴内部LC指向矢的方向,以再现施加在基于H-PDLC的光栅中的外部电压的影响。根据液滴中的LC指向矢分布,定义介电常数张量,从而建立介质的光学各向异性,并将其用于数值求解通过系统传播的光。在这项工作中,采用了裂域有限差分时域方法(SF-FDTD)。该方法适用于精确分析周期性介质,并且考虑了麦克斯韦方程组的空间和时间离散。此处提出的方案用于研究H-PDLC的衍射特性随液滴尺寸和LC分散材料体积分数的变化。

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