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Spectral modulation for full linear polarimetry

机译:光谱调制用于全线性极化

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Linear (spectro) polarimetry is usually performed using separate photon flux measurements after spatial or temporal polarization modulation. Such classical polarimeters are limited in sensitivity and accuracy by systematic effects and noise. We describe a spectral modulation principle that is based on encoding the full linear polarization properties of light in its spectrum. Such spectral modulation is obtained with an optical train of an achromatic quarter-wave retarder, an athermal multiple-order retarder, and a polarizer. The emergent spectral modulation is sinusoidal with its amplitude scaling with the degree of linear polarization and its phase scaling with the angle of linear polarization. The large advantage of this passive setup is that all polarization information is, in principle, contained in a single spectral measurement, thereby eliminating all differential effects that potentially create spurious polarization signals. Since the polarization properties are obtained through curve fitting, the susceptibility to noise is relatively low. We provide general design options for a spectral modulator and describe the design of a prototype modulator. Currently, the setup in combination with a dedicated retrieval algorithm can be used to measure linear polarization signals with a relative accuracy of 5percent.
机译:线性(光谱)极化法通常是在空间或时间极化调制之后使用单独的光子通量测量执行的。这种经典的旋光仪的灵敏度和准确性受到系统效应和噪声的限制。我们描述了一种光谱调制原理,该原理基于对光谱中光的全线性偏振特性进行编码。这种光谱调制是通过消色差四分之一波延迟器,无热多阶延迟器和偏振器的光程获得的。出现的频谱调制是正弦曲线,其幅度缩放比例随线性极化程度变化,而相位缩放比例随线性偏振角度变化。这种无源设置的最大优点是,所有极化信息原则上都包含在单个频谱测量中,从而消除了可能产生伪极化信号的所有差分效应。由于偏振特性是通过曲线拟合获得的,因此对噪声的敏感性相对较低。我们提供频谱调制器的一般设计选项,并描述原型调制器的设计。目前,结合专用检索算法的设置可用于测量线性极化信号,相对精度为5%。

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