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Fast Method for Liquid Crystal Cell Spatial Variations Estimation Based on Modeling the Spectral Transmission

机译:基于光谱透射模型的液晶盒空间变化估计快速方法

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摘要

Liquid crystal phase retarders are utilized by photonic devices and imaging systems for various applications, such as tunable filtering, light modulation, polarimetric imaging, remote sensing and quality inspection. Due to technical difficulties in the manufacturing process, these phase retarders may suffer from spatial non-uniformities, which degrade the performance of the systems. These non-uniformities can be characterized by measuring the spectral transmission at each voltage and each point on the liquid crystal cell, which is time consuming. In this work, we present a new fast and simple method for measuring and computationally estimating the spatial variations of a liquid crystal phase retarder with planar alignment. The method is based on measuring the spectral transmission of the phase retarder at several spatial locations and estimating it at others. The experimental results show that the method provides an accurate spatial description of the phase retarder and can be employed for calibrating relevant systems.
机译:液晶相位延迟器被光子设备和成像系统用于各种应用,例如可调滤波,光调制,偏振成像,遥感和质量检查。由于制造过程中的技术困难,这些相位延迟器可能会遭受空间不均匀性的影响,这会降低系统的性能。这些不均匀性可以通过测量液晶单元上每个电压和每个点的光谱透射来表征,这很费时。在这项工作中,我们提出了一种新的快速而简单的方法,用于测量和计算估计具有平面取向的液晶相位延迟器的空间变化。该方法基于在几个空间位置测量相位延迟器的光谱透射率,并在其他位置估计该透射率。实验结果表明,该方法提供了相位延迟器的准确空间描述,可用于校准相关系统。

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