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World space observatory-ultraviolet among UV missions of the coming years

机译:未来几年紫外线任务中的世界空间天文台-紫外线

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摘要

Continuous access to the UV domain has been considered of importance to astrophysicists and planetary scientists since the mid-sixties. However, the future of UV missions for the post-HST era is believed by a significant part of astronomical community to be less encouraging. We argue that key science problems of the coming years will require further development of UV observational technologies. Among these hot astrophysical issues are: the search for missing baryons, revealing the nature of astronomical engines, properties of atmospheres of exoplanets as well as of the planets of the Solar System etc. We give a brief review of UV-missions both in the past and in the future. We conclude that UV astronomy has a great future but the epoch of very large and efficient space UV facilities seems to be a prospect for the next decades. As to the current state of the UV instrumentation we think that this decade will be dominated by the HST and coming World Space Observatory-Ultraviolet (WSO-UV) with a 1. 7 m UV-telescope onboard. The international WSO-UV mission is briefly described. It will allow high resolution/high sensitivity imaging and high/low resolution spectroscopy from the middle of the decade.
机译:自六十年代中期以来,对天文学家和行星科学家而言,持续进入紫外线领域一直被认为很重要。但是,天文学界的相当一部分人认为,HST后时代的紫外线任务的未来并不令人鼓舞。我们认为,未来几年的关键科学问题将需要紫外线观测技术的进一步发展。这些天文学的热点问题包括:寻找缺失的重子,揭示天文引擎的性质,系外行星的大气以及太阳系行星的性质等。我们对过去的紫外线发射作了简要回顾并在未来。我们得出的结论是,紫外线天文学有着广阔的发展前景,但大型,高效的太空紫外线设施的时代似乎是未来几十年的前景。关于紫外线仪器的当前状态,我们认为这十年将由HST和即将到来的世界太空观测紫外线望远镜(WSO-UV)主导,并带有1. 7 m的紫外线望远镜。简要介绍了国际WSO-UV任务。从本世纪中叶开始,它将允许高分辨率/高灵敏度成像和高分辨率/低分辨率光谱学。

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