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Characterisation of liquid crystals for broadband optimal design of Mueller matrix ellipsometers

机译:橡木矩阵椭圆形宽带最优设计液晶的表征

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The optimal design over a broad spectral range of Liquid Crystal (LC) based Polarisation State Generators (PSG) and Polarisation State Analyzers (PSA), requires detailed knowledge of the spectral behaviour of the LCs. The full Mueller matrix measurement formalism based on the Eigenvalue Calibration Method, does in principle not require an exact modelling of the polarizing components, however, it is required that the condition number for both the PSG and the PSA is close to optimum over a wide spectral range. Two LC technologies are investigated here, Ferroelectric LC (FLC), and Liquid Crystal Variable Retarders (LCVR). In the case of a FLC based PSG, additional components, such as fixed retarders also need to be properly characterised in order for a proper broad spectral optimal design. These issues are here studied by characterizing the FLCs, the LCVRs and the fixed retarders with the help of a commercial visible Mueller matrix ellipsometer, and a polarizer-rotating sample-rotating analyzer near infra red set-up. The results are analyzed in the framework of the optimal condition number over a broad spectral range.
机译:基于液晶(LC)偏振态发生器(PSG)和偏振态分析仪(PSA)的广谱范围内的最佳设计需要详细了解LCS的光谱行为。基于特征值校准方法的全穆勒矩阵测量形式主义本原则上不需要精确建模偏振元件,但是,需要PSG和PSA的条件号接近宽的频谱上的最佳状态范围。这里研究了两个LC技术,铁电LC(FLC)和液晶可变延迟器(LCVR)。在基于FLC的PSG的情况下,还需要正确地表征诸如固定延迟器的附加组件,以便进行适当的广谱最佳设计。这里通过在商业可见瓶子矩阵椭圆仪的帮助下表征FLC,LCVR和固定延迟器来研究这些问题,以及靠近红外线设置的偏振器旋转样品旋转分析仪。在广谱范围内在最佳状态编号的框架中分析结果。

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