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Polarization Gratings for Visible and Near-Infrared Astronomy

机译:可见光和近红外天文学的偏振光栅

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We report on the development of polarization gratings that can be used for polarimetry and/or high throughput broadband spectroscopy in astronomy. Polarization gratings are able to overcome fundamental limitations on the diffraction efficiency of conventional gratings to provide near 100% diffraction efficiency over a broad bandwidth. The broad spectral coverage of these devices will be useful for observations of gamma-ray bursts and supernovae of unknown the redshift, where spectral features may fall over a range of wavelengths. As a spectropolarimeter a polarization grating would be ideal, for example, for the study of dusts and hazes, whose polarimetric properties vary with wavelength. We present the results of a series of laboratory measurements of the diffraction efficiency and modulation efficiency of a prototype grating designed for operation from 500 to 900 nm. We find that the grating is able to achieve greater than 90% diffraction efficiency from 500 to 850 nm and modulate incident circular polarized light with an efficiency of ~ 99%. Our future plans include on-sky testing at a small local telescope, with an eventual goal of incorporating a polarization grating into the design of a microshutter array-based multi-object visible/NIR spectrograph for a 10m class facility.
机译:我们报告了可用于天文学中的偏振和/或高通量宽带光谱学的偏振光栅的发展。偏振光栅能够克服常规光栅衍射效率的基本限制,从而在较宽的带宽上提供接近100%的衍射效率。这些设备的广泛光谱覆盖范围将有助于观察未知红移的伽马射线爆发和超新星,其中光谱特征可能会落在一定波长范围内。作为分光偏振计,例如,偏振光栅对于研究粉尘和雾霾是理想的,这些粉尘和雾霾的偏振特性随波长而变化。我们介绍了一系列实验室测量的结果,这些测量结果是为500至900 nm工作而设计的原型光栅的衍射效率和调制效率的结果。我们发现,光栅能够在500至850 nm范围内实现大于90%的衍射效率,并以〜99%的效率调制入射的圆偏振光。我们未来的计划包括在小型本地望远镜上进行空中测试,最终目标是将偏振光栅结合到基于微快门阵列的多目标可见/近红外光谱仪的设计中,以实现10m级设施。

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