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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >A method of calculating compensators in polarization-sensitive optical systems
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A method of calculating compensators in polarization-sensitive optical systems

机译:一种计算极化敏感光学系统补偿器的方法

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摘要

A simple method to measure and compensate polarization-sensitive optical components (retarders) is proposed, based on Stokes vector polarimetry. First, the Mueller matrix of an unknown polarization-sensitive element with arbitrary retardance and fast-axis orientation is obtained by means of a conventional measurement and calculation polarimetric procedure. Then a novel numerical technique is proposed, allowing to express the measured retarder's Mueller matrix in terms of retardance δ and fast axis orientation θ. Further, a method for calculating polarization compensators is proposed, to balance phase differences introduced by one or more retarders. Compensation is achieved by a single compensating retarder whose parameters are derived from the original retarder's Mueller matrix, or its equivalent (δ,θ) pair. The technique works for all possible fast-axis orientations of the original retarder. The method was validated using an electrically controllable liquid crystal retarder as a compensator. The approach described here is constrained to optical elements that behave as nearly pure retarders, i.e. their diattenuation and depolarization are negligible. Possible applications are in the design of polarization-sensitive systems (biomedical, environmental, chemical, optical communications, etc.) where recovery and/or precise control of the polarization state of light is needed, in polarization tracing models based on the Mueller matrix formalism, and others.
机译:提出了一种用于测量和补偿偏振敏感光学组件(延迟器)的简单方法,基于Stokes向量偏振器。首先,通过传统的测量和计算极化程序获得具有任意延迟和快速轴取向的未知偏振敏感元件的穆勒矩阵。然后提出了一种新颖的数值技术,允许在延迟Δ和快速轴方向θ方面表达测量的延迟器的穆勒矩阵。此外,提出了一种计算偏振补偿器的方法,以平衡由一个或多个延迟器引入的相位差。通过单个补偿延迟器来实现补偿,其参数来自原始延迟器的穆勒矩阵,或其等效物(Δ,θ)对。该技术适用于原始延迟器的所有可能的快速轴方向。使用电可控液晶延迟器作为补偿器验证该方法。这里描述的方法被限制为表现出几乎纯延迟器的光学元件,即它们的利通和去极化可忽略不计。可能的应用是在基于穆勒矩阵形式主义的偏振追踪模型中需要偏振敏感系统(生物医学,环境,化学,光通信等)的偏振敏感系统(生物医学,环境,化学,光学通信等)。 , 和别的。

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