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The science case and mission concept for the Single Aperture Far-Infrared (SAFIR) Observatory

机译:单孔径远红外(SAFIR)天文台的科学案例和使命概念

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SAFIR is a large (10 m-class), cold (4-10 K) space telescope for wavelengths between 20 microns and 1 mm. It will provide sensitivity a factor of a hundred or more greater than that of Spitzer and Herschel, leveraging their capabilities and building on their scientific legacies. Covering this scientifically critical wavelength regime, it will complement the expected wavelength performance of the future flagship endeavors JWST and ALMA. This vision mission will probe the origin of stars and galaxies in the early universe, and explore the formation of solar systems around nearby young stars. Endorsed as a priority by the Decadal Study and successive OSS roadmaps, SAFIR represents a huge science need that is matched by promising and innovative technologies that will allow us to satisfy it. In exercising those technologies it will create the path for future infrared missions. This paper reviews the scientific goals of the mission and promising approaches for its architecture, and considers remaining technological hurdles. We review how SAFIR responds to the scientific challenges in the OSS Strategic Plan, and how the observatory can be brought within technological reach.
机译:Safir是一个大(10米级),冷(4-10 k)太空望远镜,用于波长20微米和1毫米。它将提供比Spitzer和Herschel更大的敏感性,略高于斯皮策和Herschel,利用他们的科学遗产。覆盖了这种科学临界波长制度,它将补充未来旗舰努力JWST和ALMA的预期波长性能。此愿景使命将探讨早期宇宙中的星星和星系的起源,并探索附近的年轻恒星周围的太阳能系统。作为Decadal研究和连续的OSS路线图所批准,Safir代表了巨大的科学需求,这是通过有前途和创新技术匹配的,使我们能够满足它。在锻炼这些技术时,它将创造未来红外任务的路径。本文审查了使命的科学目标和有希望的架构方法,并考虑其剩余的技术障碍。我们审查Safir如何应对OSS战略计划中的科学挑战,以及如何在技术范围内带来天文台。

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