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Optical design of the STAR-X telescope

机译:STAR-X望远镜的光学设计

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Top-level science objectives of the Survey and Time-domain Astrophysical Research eXplorer (STAR-X) include: investigations of most violent explosions in the universe, study of growth of black holes across cosmic time and mass scale, and measure how structure formation heats majority of baryons in the universe. To meet these objectives, the STAR-X telescope requires a field of view of about 1 square-degree, an angular resolution of 5 arc-seconds or better across large part of the field of view. The on-axis effective area at 1 keV should be about 2,000 cm2. Payload cost and launch considerations limit the outer diameter, focal length, and mass to 1.3 meters, 5 meters, and 250 kilograms, respectively. Telescope design is based on a segmented meta-shell approach we have developed at Goddard Space Flight Center. The telescope mirror shells are divided into segments. Individual shells are nested inside each other to meet the effective area requirements in 0.5 - 6.0 keV range. We consider Wolter-Schwarzschild, and Modified-Wolter-Schwarzschild telescopes. These designs offer an excellent PSF over a large field of view. Nested shells are vulnerable to stray light problems. We have designed a multi -component baffle system to eliminate direct and single-reflection light paths inside the mirror assembly. Large numbers of internal and external baffles are required to prevent stray rays from reaching the focal plane. We have developed a simple ray-trace tool to determine the dimensions and locations of the baffles. In this paper, we present the results of our trade studies, baffle design studies, and optical performance analyses of the STAR-X telescope.
机译:调查和时域天体物理学研究专家(STAR-X)的最高科学目标包括:研究宇宙中最剧烈的爆炸,研究宇宙时间和质量范围内黑洞的生长以及测量结构形成的热量宇宙中的大多数重子。为了达到这些目的,STAR-X望远镜需要在大约1平方度的视场中,在大部分视场中都需要5角秒或更高的角分辨率。 1 keV时的轴向有效面积应约为2,000 cm2。有效载荷成本和发射注意事项分别将外径,焦距和质量限制为1.3米,5米和250公斤。望远镜的设计基于我们在戈达德太空飞行中心开发的分段超壳方法。望远镜镜壳分为多个部分。各个壳相互嵌套,以满足0.5-6.0 keV范围内的有效面积要求。我们考虑Wolter-Schwarzschild望远镜和Modified-Wolter-Schwarzschild望远镜。这些设计在很大的视野范围内提供了出色的PSF。嵌套壳很容易受到杂散光的影响。我们设计了一种多组件挡板系统,以消除反射镜组件内部的直接和单反射光路。需要大量的内部和外部挡板,以防止杂散光线到达焦平面。我们已经开发了一种简单的光线跟踪工具来确定挡板的尺寸和位置。在本文中,我们介绍了STAR-X望远镜的行业研究,挡板设计研究和光学性能分析的结果。

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