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The NASA probe-class mission concept, CETUS (Cosmic Evolution Through Ultraviolet Spectroscopy)

机译:美国宇航局探测阶级任务概念,Cetus(通过紫外光谱宇宙演进)

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We report on the early phases of a NASA-sponsored study of CETUS (Cosmic Evolution Through Ultraviolet Spectroscopy), a Probe-class mission concept. By definition, the full lifecycle cost of a Probe mission is greater than $400M (i.e. Explorer missions) and less than $1.00B ("Flagship" missions). The animating idea behind our study is that CETUS can help answer fundamental questions about galaxy evolution by carrying out a massive UV imaging and spectroscopic survey of galaxies and combining its findings with data obtained by other survey telescopes of the 2020's. The CETUS mission concept comprises a 1.5-m wide-field telescope and three scientific instruments: a near-UV multi-object slit spectrograph with a micro-shutter array as the slit device; a near-UV and far-UV camera with angular resolution of 0.42" (near-UV) or 0.55" (far-UV); and a near-UV or far-UV single-object spectrograph aimed at providing access to the UV after Hubble is gone. We describe the scientific rationale for CETUS and the telescope and instruments in their early design phase.
机译:我们对CETUS(宇宙演化通过紫外光谱法),探头级任务概念的美国航空航天局资助的研究的早期阶段报告。根据定义,探测任务的整个生命周期成本比$ 400M(即浏览器的任务),并低于$ 1.00B(“旗舰”任务)更大。我们的研究背后的动画想法是,CETUS可以通过进行大规模的紫外成像和光谱巡天星系及其调查结果与2020年的其他调查望远镜获得的数据相结合有助于了解星系演化的回答基本问题。所述CETUS任务概念包括1.5米的宽视场望远镜和三个科学仪器:带有微快门阵列作为缝隙装置的近紫外多对象缝光谱仪;近紫外和远紫外相机的0.42" 角分辨率(近UV)或0.55" (远紫外);和近紫外或远紫外单目标光谱仪旨在哈勃消失后提供进入UV。我们描述了CETUS在早期设计阶段的科学原理和望远镜和仪器。

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