Characterization of beam splitter using Mueller matrix ellipsometry

Song Zhang, Jiamin Liu, Hao Jiang, Shiyuan Liu
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Abstract

Polarization distortion is a phenomenon which the polarization state of output light deviates from the theoretical expectation. Due to the design defects and process limitations, polarization distortion in beam splitter is inevitable, which results in the significant errors in the optical systems. A theoretical analysis method based on Mueller matrix is proposed for characterizing the beam splitter. In the propose approach, polarization distortion in the beam splitter including depolarization, linear and circular birefringence, and linear diattenuation, circular dichroism have been considered. With the proposed method, we can characterize the beam splitters and extract the related effective optical parameters of polarization distortion. The Mueller matrices of two different commonly used beam splitters measured by a commercial Mueller matrix ellipsometer (MME) are consistently fitted by the proposed method and the residual errors have shown the improvement compared to the conventional methods.
用Mueller矩阵椭偏法表征分束器
偏振畸变是指输出光的偏振态偏离理论预期的现象。由于设计缺陷和工艺限制,分束器的偏振畸变是不可避免的,导致光学系统存在较大的误差。提出了一种基于穆勒矩阵的分束器特性分析方法。该方法考虑了分束器的偏振畸变,包括去极化、线性和圆双折射、线性双衰减、圆二色性。利用该方法,我们可以对分束器进行表征,提取偏振畸变的相关有效光学参数。用商用米勒矩阵椭偏仪(MME)测量的两种常用分束器的米勒矩阵的拟合结果一致,残差较传统方法有明显改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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