论文标题
紫外线任务:紫外线光谱表征行星及其环境
The UV-SCOPE Mission: Ultraviolet Spectroscopic Characterization Of Planets and their Environments
论文作者
论文摘要
UV-SCOPE是一个任务概念,旨在确定系外行星中大气质量损失的原因,研究驱动热木星中气溶胶形成的机制,并研究恒星环境对大气进化和宜居性的影响。作为这些调查的一部分,该任务将生成近200颗恒星和行星的时间域紫外线(UV)光谱的广泛遗产数据库。 天盘由60厘米,f/10望远镜组成,配对长张光谱仪,同时产生,几乎连续的覆盖率在1203Å至4000Å之间,分辨率为6000至240。有效的仪器范围从> 4%(Far-uv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv; fuv);在相同的光谱范围内。关键的设计功能是LIF Prism,它是一个分散元件,即使考虑到辐射降解后,也提供了高通量。使用两种掺杂的Delta掺杂电子的CCD检测器,具有紫外线优化的单层抗反射涂层可提供高量子效率和低检测器噪声。从地球第二个拉格朗日点开始,紫外线将在整个fuv-to-nuv范围内不断观察行星跨性别和恒星变异性,并具有可忽略的天体物理背景。 所有这些功能使UV-Scope成为研究超球星氛围以及宿主恒星对行星的影响的理想工具。 UV-Scope被提议向NASA担任中型探险家(Midex)任务,以宣布机会。如果获得批准,则将在5年内开发天文台。它的主要科学任务需要34个月才能完成。该航天器载有足够的燃料来进行6年的操作。
UV-SCOPE is a mission concept to determine the causes of atmospheric mass loss in exoplanets, investigate the mechanisms driving aerosol formation in hot Jupiters, and study the influence of the stellar environment on atmospheric evolution and habitability. As part of these investigations, the mission will generate a broad-purpose legacy database of time-domain ultraviolet (UV) spectra for nearly 200 stars and planets. The observatory consists of a 60 cm, f/10 telescope paired to a long-slit spectrograph, yielding simultaneous, almost continuous coverage between 1203 Å and 4000 Å, with resolutions ranging from 6000 to 240. The efficient instrument provides throughputs > 4% (far-UV; FUV) and > 15% (near-UV; NUV), comparable to HST/COS and much better than HST/STIS, over the same spectral range. A key design feature is the LiF prism, which serves as a dispersive element and provides high throughput even after accounting for radiation degradation. The use of two delta-doped Electron-Multiplying CCD detectors with UV-optimized, single-layer anti-reflection coatings provides high quantum efficiency and low detector noise. From the Earth-Sun second Lagrangian point, UV-SCOPE will continuously observe planetary transits and stellar variability in the full FUV-to-NUV range, with negligible astrophysical background. All these features make UV-SCOPE the ideal instrument to study exoplanetary atmospheres and the impact of host stars on their planets. UV-SCOPE was proposed to NASA as a Medium Explorer (MidEx) mission for the 2021 Announcement of Opportunity. If approved, the observatory will be developed over a 5-year period. Its primary science mission takes 34 months to complete. The spacecraft carries enough fuel for 6 years of operations.