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Optical designs for large detector arrays on spherical-primary orbital/sub-orbital telescopes

机译:球形原轨道/亚轨道望远镜上大型探测器阵列的光学设计

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We discuss the guidelines to the optical design for relatively smallaperture sub-millimeter telescopes employing a spherical primary and largeformat bolometer arrays. Although optical solutions for large ground optical telescopes using a spherical primary are discussed in the literature, these configurations are not acceptable for orbital or sub-orbital platforms. As a baseline telescope design we will use BLAST, the "Balloon-borne Large-Aperture Sub-millimeter Telescope", which will be employing bolometer arrays at 250 μm, 350 μm and 500 μm, and will carry a 2.0 m spherical primary mirror during the first flight. We examine two different sets of optical solutions that might be used on future spherical-primary small aperture telescopes: first, we discuss configurations employing on-axis optical elements to correct the spherical aberration introduced by the primary. Then we present several optical solutions using off-axis, cooled mirrors. These configurations are discussed in relation to optical performance and various operational design constraints. A preliminary optical design for BLAST is also discussed.
机译:我们讨论了采用球面初级和大型辐射热计阵列的相对较小孔径亚毫米望远镜的光学设计指南。尽管在文献中讨论了使用球形原边的大型地面光学望远镜的光学解决方案,但这些配置对于轨道或亚轨道平台是不可接受的。作为基线望远镜的设计,我们将使用BLAST,即“气球载大孔径亚毫米望远镜”,它将使用250μm,350μm和500μm的辐射热计阵列,并在安装过程中携带2.0 m球面主镜第一次飞行。我们研究了两组可能在未来的球面初级小孔径望远镜上使用的光学解决方案:首先,我们讨论了使用轴上光学元件来校正由初级引入的球面像差的配置。然后,我们介绍使用偏轴冷却镜的几种光学解决方案。结合光学性能和各种操作设计约束来讨论这些配置。还讨论了BLAST的初步光学设计。

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