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Wide-field optical design for a 60 m submillimeter telescope

机译:用于60米泛米望远镜望远镜的宽场光学设计

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摘要

We present a practical wide-field optical design for a 60 m aperture submillimeter telescope, which is currently under conceptual design study in China. The telescope is specified to operate over a wavelength range of 0.65-3mm and provide a wide field of view (FOV) of 1 degrees in diameter. We designed an F/6 Ritchey Chretien (RC) system with a quasi-planar tertiary corrector, which cancels all spherical, coma, and astigmatism aberrations. It also achieves a good balance among the mirror sizes, central obscuration, and focal-plane curvature. The problems of focal surface curvature and nontelecentricity are treated in the subfield instrumental design, which employs a simple silicon wedge prism to obtain flat and telecentric focal planes for each subfield instrument module. Our studies show that by such a design, more than 10(5) detector pixels can be efficiently and uniformly fed at the shortest wavelength band with Strehl ratios above 0.85 across the entire 1 degrees FOV. Several practical issues related to the telescope optics are also discussed. (C) 2020 Optical Society of America
机译:我们为60米孔径箱望远镜提供了一种实用的广泛光学设计,目前正在中国概念设计研究。指定望远镜以在0.65-3mm的波长范围内操作,并提供直径为1度的宽视野(FOV)。我们设计了一个带有准平面三级校正器的F / 6 Ritchey Chretien(RC)系统,该系统取消了所有球形,昏迷和散光畸变。它还在镜子尺寸,中央遮蔽和焦面曲率之间实现了良好的平衡。焦点表面曲率和不合形度的问题在子场仪器设计中处理,其采用简单的硅楔形棱镜,以获得每个子场仪器模块的平坦和远心焦平面。我们的研究表明,通过这种设计,可以在整个1度FOV上高于0.85的刻度比在最短波长带上有效且均匀地馈送10多(5)个检测器像素。还讨论了与望远镜光学有关的几个实际问题。 (c)2020美国光学学会

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    《Applied optics》 |2020年第11期|共7页
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  • 正文语种 eng
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