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Optical crosstalk and off-axis modeling of an intrinsic coincident polarimeter

机译:内在重合偏振仪的光串扰和轴外建模

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Polarimeters have broad applications in remote sensing, astronomy, and biomedical imaging to measure the emitted, reflected, or transmitted state of polarization. An intrinsic coincident (IC) full-Stokes polarimeter was previously demonstrated by our group, in a free space configuration, by using stain-aligned polymer-based organic photovoltaics. To minimize the model's complexity, these were tilted to avoid crosstalk from back-reflections. We present a theoretical model of a monolithic IC polarimeter that considers the back-reflection's influence for on-axis light. The model was validated using a monolithic four-detector polarimeter, which achieved an error of less than 3%. Additionally, an off-axis model was produced and validated for a simpler two detector polarimeter, demonstrating an error between the TM and TE polarized components of less than 3% for angles spanning an 18 degrees incidence cone. (C) 2019 Optical Society of America
机译:偏振仪在遥感,天文学和生物医学成像中具有广泛的应用,以测量发射的,反射或透射的极化状态。 通过使用污渍对准的聚合物基有机光伏电极,我们的基团在自由空间构造中,我们的组先前证明了固有的重合(IC)全斯托克斯极化仪。 为了最大限度地减少模型的复杂性,这些是倾斜的,以避免反射串扰。 我们介绍了一层整体IC偏振仪的理论模型,其考虑了反射对轴上光的影响。 使用单片四探测器偏振仪进行验证该模型,该探测器达到误差小于3%。 另外,为更简单的两个检测器偏振仪产生并验证了轴轴模型,在跨越18度入射锥的角度,在TM和TE偏振分量之间的误差展示小于3%的误差。 (c)2019年光学学会

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    《Applied optics》 |2020年第1期|共9页
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