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Numerical analysis and design of patterned electrode liquid crystal microlens array with dielectric slab

机译:介电平板图案化电极液晶微透镜阵列的数值分析与设计

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The phase profile of hole patterned electrode liquid crystal (LC) microlens array (MLA) was studied by a numerical method. It indicated that the formation of inverse domain and tilt wall in the liquid crystal cell limits the optical performance of the microlens array. The physical mechanism that determines the formation of inverse domain and tilt wall was elucidated by analyzing the phase profile and the liquid crystal director distribution. According to our numerical results, a new configuration for hole patterned electrode liquid crystal microlens array was proposed by introducing a dielectric slab between the patterned electrode and the liquid crystal. The physical parameters that influence the optical performance of this new configuration LC MLA were studied, which provide fundamental information for the design. The results indicate that the phase profile and focusing power of the new configuration is greatly improved.
机译:通过数值方法研究了孔构图电极液晶(LC)微透镜阵列(MLA)的相位分布。这表明液晶单元中反畴和倾斜壁的形成限制了微透镜阵列的光学性能。通过分析相位分布和液晶指向矢分布,阐明了确定逆畴和倾斜壁形成的物理机制。根据我们的数值结果,通过在图案化电极和液晶之间引入介电平板,提出了一种新的孔图案化电极液晶微透镜阵列配置。研究了影响此新配置LC MLA光学性能的物理参数,这些参数为设计提供了基本信息。结果表明,新配置的相位轮廓和聚焦能力得到了极大的改善。

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