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Vacuum ultraviolet spectropolarimeter design for precise polarization measurements

机译:真空紫外分光旋光仪设计,用于精确的偏振测量

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Precise polarization measurements in the vacuum ultraviolet (VUV) region provide a new means for inferring weak magnetic fields in the upper atmosphere of the Sun and stars. We propose a VUV spectropolarimeter design ideally suited for this purpose. This design is proposed and adopted for the NASA-JAXA chromospheric lyman-alpha spectropolarimeter (CLASP), which will record the linear polarization (Stokes Q and U) of the hydrogen Lyman-alpha line (121.567 nm) profile. The expected degree of polarization is on the order of 0.1%. Our spectropolarimeter has two optically symmetric channels to simultaneously measure orthogonal linear polarization states with a single concave diffraction grating that serves both as the spectral dispersion element and beam splitter. This design has a minimal number of reflective components with a high VUV throughput. Consequently, these design features allow us to minimize the polarization errors caused by possible time variation of the VUV flux during the polarization modulation and by statistical photon noise. (C) 2015 Optical Society of America
机译:真空紫外(VUV)区域中的精确极化测量提供了一种新方法,可以推断出太阳和恒星高层大气中的弱磁场。我们提出了一种非常适合此目的的VUV分光计设计。 NASA-JAXA色球莱曼-α分光旋光计(CLASP)提出并采用了该设计,它将记录氢莱曼-阿尔法线(121.567 nm)轮廓的线性极化(斯托克斯Q和U)。预期的极化度约为0.1%。我们的光谱偏振仪具有两个光学对称通道,可使用单个凹面衍射光栅同时测量正交线性偏振态,该光栅既可作为光谱色散元件,又可作为分束器。这种设计具有最少的反射组件,并具有很高的VUV吞吐量。因此,这些设计功能使我们能够将由极化调制期间VUV通量的可能时间变化和统计光子噪声引起的极化误差降至最低。 (C)2015年美国眼镜学会

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