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Fiber loop mirror-based optical transmissivity and optical phase retardation measurement architecture

机译:基于光纤环镜的光透射率和光相位延迟测量架构

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摘要

We introduce and experimentally demonstrate a fiber-connectorized optical system based on the use of a fiber-loop mirror (FLM) to study both the optical transmissivity and the optical phase retardation of a material. Our approach to investigating the optical transmissivity of a test sample is by initially adjusting the optical powers at both FLM output ports to the extremum. A reference and the test sample are then placed one by one at one of the FLM output ports. For the optical phase retardation measurement, we propose placing a test sample inside the FLM and analyzing the ratio of the normalized optical powers from the two FLM output ports in order to eliminate the effect of unwanted optical losses. Our experimental proof of concept using three known zero-order wave plates as our test samples shows promising results that agree very well with our theoretical analysis. Key features include robustness, low optical loss, low polarization dependent loss, and ease of implementation.
机译:我们介绍并实验证明了基于光纤环镜(FLM)的光纤连接光学系统,用于研究材料的光学透射率和光学相位延迟。我们研究测试样品的透光率的方法是,首先调整两个FLM输出端口到极值的光功率。然后将参考物和测试样品一一放置在FLM输出端口之一上。对于光学相位延迟测量,我们建议将测试样品放置在FLM内,并分析来自两个FLM输出端口的归一化光功率的比率,以消除不必要的光损耗的影响。我们使用三个已知的零阶波片作为测试样本的实验概念证明显示出令人鼓舞的结果,与我们的理论分析非常吻合。关键特性包括耐用性,低光损耗,低偏振相关损耗以及易于实现。

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