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Small Solutions to the Large Telescope Problem: A MassivelyReplicated MEMS Spectrograph

机译:大型望远镜问题的小解决方案:大规模复制的MEMS光谱仪

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In traditional seeing-limited observations the spectrograph aperture scales with telescope aperture, driving sizes and costs to enormous proportions. We propose a new solution to the seeing-limited spectrograph problem. A massively fiber-sliced configuration feeds a set of small diffraction-limited spectrographs. We present a prototype, tunable, J-band, diffraction grating, designed specifically for Astronomical applications: The grating sits at the heart of a spectrograph, no bigger than a few inches on a side. Throughput requirements dictate using tens-of-thousands of spectrographs on a single 10 to 30 meter telescope. A full system would cost significantly less than typical instruments on 10m or 30m telescopes.
机译:在传统的视力有限的观察中,光谱仪的孔径与望远镜的孔径,驱动尺寸和成本成比例地成比例。我们为视线受限的光谱仪问题提出了一种新的解决方案。大量切成薄片的光纤配置为一组小型的衍射极限光谱仪供料。我们提供了一种专为天文应用而设计的原型,可调谐J波段衍射光栅:光栅位于光谱仪的中心,侧面不超过几英寸。吞吐量要求规定在一台10至30米的望远镜上使用成千上万的光谱仪。完整系统的成本将大大低于10m或30m望远镜上的典型仪器。

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