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基于铁电液晶的高性能多光谱穆勒偏振仪的创新集成数值-实验方法

Innovative integrated numerical-experimental method for high-performance multispectral Mueller polarimeters based on ferroelectric liquid crystals.

作者信息

Lindberg Arvid, Vizet Jeremy, Rehbinder Jean, Gennet Camille, Vanel Jean-Charles, Pierangelo Angelo

出版信息

Appl Opt. 2019 Jul 1;58(19):5187-5199. doi: 10.1364/AO.58.005187.

Abstract

In this work, an original and effective integrated numerical-experimental approach is proposed for building a high-performance multispectral Mueller polarimeter based on ferroelectric liquid crystals (FLCs). This method relies on accurate experimental characterization of the optical components specifically selected to construct such a system, combined with a numerical procedure used to optimize it, in the spectral range of interest, by means of a global optimization function. The proposed strategy enabled the construction of an FLC-based Mueller polarimeter in transmission configuration operating between 450 and 700 nm. The robustness of this system to various optical component misalignments, as well as the conditions to keep the measurement error less than 1% over the whole spectral range of interest, have been determined experimentally. The proposed strategy is very well suited to build optimized multispectral Mueller polarimetric systems for biomedical applications for which variations of the order of a few percent in the elements of the measured Mueller matrices need to be appreciated.

摘要

在这项工作中,提出了一种新颖且有效的集成数值-实验方法,用于构建基于铁电液晶(FLC)的高性能多光谱穆勒偏振计。该方法依赖于对专门挑选用于构建此类系统的光学元件进行精确的实验表征,并结合一种数值程序,通过全局优化函数在感兴趣的光谱范围内对其进行优化。所提出的策略使得能够构建出一种透射配置下工作在450至700纳米之间的基于FLC的穆勒偏振计。通过实验确定了该系统对各种光学元件未对准情况的鲁棒性,以及在整个感兴趣的光谱范围内将测量误差保持在1%以下的条件。所提出的策略非常适合构建用于生物医学应用的优化多光谱穆勒偏振系统,对于这些应用,需要能够识别测量的穆勒矩阵元素中百分之几数量级的变化。

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