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液晶可变延迟器宽带斯托克斯偏振计的优化设计

Optimal design for a broadband Stokes polarimeter of liquid crystal variable retarders.

作者信息

Wu Jiaxin, Li Yanqiu, Ning Tianlei, Long Chenhui, Zhou Guodong

出版信息

Appl Opt. 2022 Sep 1;61(25):7490-7497. doi: 10.1364/AO.463635.

Abstract

Liquid crystal variable retarders (LCVRs) are the core component for rapid and high-precision broadband polarization detection. Additionally, the ability to suppress noise greatly affects the results of polarization measurements. In this work, a solving optimal design approach is proposed for building a high-performance broadband Stokes polarimeter based on LCVRs, which greatly reduces the influences of data fluctuation from liquid crystals and dispersion on the experimental results. This method relies on evaluation criteria of the condition number (CN) to build a gradual optimization that includes the following three steps: fixing the fast axis angles, meeting the requirements of a wideband, and ensuring a minimum CN. Additionally, with the method of increasing the measurement analysis vector, we ensure the whole band in the low CN and offer a solution to the problem of the difficulty in optimizing the LCVRs caused by the large change of retardance at 490-700 nm. Finally, the rapid and high-precision Stokes measurement of 490-700 nm wavelengths is achieved. We test the performance of the polarimeter after optimization in our simulation and experiment, which shows that the total RMS error is less than 0.032 and the single point error is small. This work not only reduces the influence of LCVR error on the experimental results but also makes it possible to apply LCVRs to 490-700 nm detection.

摘要

液晶可变延迟器(LCVRs)是快速高精度宽带偏振检测的核心部件。此外,抑制噪声的能力对偏振测量结果有很大影响。在这项工作中,提出了一种求解最优设计方法,用于构建基于LCVRs的高性能宽带斯托克斯偏振仪,该方法大大降低了液晶数据波动和色散对实验结果的影响。该方法依靠条件数(CN)的评估标准来构建一个逐步优化过程,包括以下三个步骤:固定快轴角度、满足宽带要求以及确保最小的CN。此外,通过增加测量分析向量的方法,我们确保了整个波段处于低CN状态,并解决了由于490 - 700 nm处延迟变化大而导致的LCVRs优化困难问题。最后,实现了490 - 700 nm波长的快速高精度斯托克斯测量。我们在模拟和实验中测试了优化后偏振仪的性能,结果表明总均方根误差小于0.032且单点误差较小。这项工作不仅减少了LCVR误差对实验结果的影响,还使得将LCVRs应用于490 - 700 nm检测成为可能。

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