论文标题

带有小卫星的紫外线天文学

UV astronomy with small satellites

论文作者

Ribes-Pleguezuelo, Pol, Keller, Fanny, Taccola, Matteo

论文摘要

具有高性能航空电子技术的小型卫星平台变得越来越实惠。到目前为止,除少数例外,小型卫星主要专门用于地球观察。但是,天文学是一个有趣的领域,拥有大型任务的历史和有前途的大型任务候选人的未来。这提示了许多问题;小型卫星的最近负担能力可以改变太空天文学的景观吗?小卫星可能对天文学有用的潜在应用和科学主题是什么?成功解决感兴趣的天文学调查需要实现哪些要求和目标?哪种仪器最适合小型平台和科学用例?本文讨论了可能以36 cm的望远镜光圈相对较小的望远镜孔可实现的科学用例。这项调查的结果表明,在紫外线光谱范围内,特定的利基市场 - 侵入观察结果。紫外线天文学是一个研究领域,具有宝贵的科学影响。但是,这并不是许多当前或过去天文学研究的重点。由于大气吸收在此光谱范围内,无法从地球进行紫外线天文学测量。目前,研究领域稀少,但对于大型社区而言,科学兴趣。小型卫星提供了为紫外线天文学提供更多研究手段的机会。因此,本文还提出了一个仪器设计,其中具有适度的望远镜光圈,一个光谱仪和适合于紫外线观测的检测器。天文台设计可以容纳在小型平台上,以适用于选定的科学用例。它满足了这些用例的科学目标和要求。

Small satellite platforms with high performance avionics are becoming more affordable. So far, with a few exceptions, small satellites have been mainly dedicated to earth observation. However, astronomy is a fascinating field with a history of large missions and a future of promising large mission candidates. This prompts many questions; can the recent affordability of small satellites change the landscape of space astronomy? What are the potential applications and scientific topics of interest, where small satellites could be instrumental for astronomy? What are the requirements and objectives that need to be fulfilled to successfully address the astronomical investigations of interest? Which kind of instrumentation suits the small platforms and the scientific use cases best? This paper discusses possible scientific use cases that can be achievable with a relatively small telescope aperture of 36 cm, as an example. The result of this survey points to a specific niche market -astronomy observation in the UV spectral range. UV astronomy is a research field which has had valuable scientific impact. It is, however, not the focus of many current or past astronomical investigations. UV astronomy measurements cannot be made from earth, due to atmospheric absorption in this spectral range. The research field is currently sparsely addressed but of scientific interest for a large community. Small satellites offer the opportunity to provide more means of research for UV astronomy. Therefore, this paper also presents an instrument design with a modest telescope aperture, a spectrometer and a detector that is suitable for observations in the UV. The observatory design can be accommodated on small platforms for the selected scientific use cases. It fulfills the scientific objectives and requirements of those use cases.

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