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FUSE: lessons learned for future FUV missions

机译:保险丝:对未来的FUV任务学习的经验教训

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The far ultraviolet spectral region (roughly 900-1200 A) is densely packed with strong atomic, ionic and molecular transitions of astrophysical importance. Many of these transitions provide unique access to the associated species. This spectral region is also technically challenging: optical reflectivities are limited, contamination control requirements are severe and detectors must be windowless. The Far Ultraviolet Spectroscopic Explorer (FUSE) covers the spectral region 905-1187 A with a resolution ~15 km s~(-1). The mission, launched in June 1999 and now in its fifth year of science operations, has reaped a rich scientific harvest from this spectral region. This paper will examine the lessons learned from the FUSE mission with the perspective of looking ahead to possible future missions. In order to build on the scientific advances of the FUSE mission, such a mission would require both increased sensitivity and higher spectral resolution. We conclude that achieving these requirements will necessitate, among other advances, new approaches to far ultraviolet mirror coating technology. We also examine the possibility of accessing the far ultraviolet using an ultraviolet observatory designed for longer wavelength ultraviolet radiation.
机译:远紫外光谱区(大致900-1200 A)被致密地填充有天体物理重要性强原子,离子和分子跃迁。许多这些转变提供了相关的物种唯一的访问。该光谱区域也具有技术挑战:光学反射率是有限的,污染控制要求严重和探测器必须是无窗口。的远紫外分光探测器(FUSE)覆盖的光谱区905-1187甲,分辨率约15公里S〜(-1)。使命,在科学运作的第五个年头,1999年6月推出,现在,也收获了来自该光谱区中具有丰富的科学收获。本文将探讨从与展望未来可能的任务的角度来看,FUSE任务获得的经验教训。为了建立在FUSE使命的科学进步,这样的任务就需要既增加了灵敏度和高光谱分辨率。我们的结论是达到这些要求,将需要其他的进步,新的方法来远紫外线镜面涂层技术之一。我们还检查使用紫外天文台设计用于较长波长的紫外辐射访问远紫外线的可能性。

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