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Development of large aperture cooled telescopes for the Space Infrared Telescope for Cosmology and Astrophysics (SPICA) mission

机译:大口径冷却望远镜的发展,用于宇宙红外和天体物理学太空望远镜(SPICA)

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The Space Infrared Telescope for Cosmology and Astrophysics (SPICA) mission is the third Japanese astronomical infrared satellite project of a 3.5m cooled telescope optimized for mid- to far-infrared observations, following the Infrared Telescope in Space (IRTS) and the ASTRO-F missions. It will employ mechanical coolers and an efficient radiative cooling system, which allow us to have a cooled (4.5K) telescope of the aperture much larger than previous missions in space. The SPICA will attack a number of key problems in present-day astrophysics, ranging from the origin of the universe to the formation of planetary systems, owing to its high spatial resolution and unprecedented sensitivity in the mid- to far-infrared. The large aperture size for cryogenically use is, however, a great challenge and demands substantial technology developments for the telescope system. We adopt monolithic mirror design in the baseline model because of the technical feasibility and reliability. We set the optical performance requirement as being diffraction limited at 5μm at the operating temperature of 4.5K. The total weight attributed to the telescope system is 700kg, which requires a very light 3.5m primary mirror together with the mirror support structure. At present we are working on two candidate materials for the SPICA telescope: silicon carbide (SiC) and carbon-fiber reinforced silicon carbide (C/SiC). This presentation gives a general overview of the SPICA mission and reports the current design and status of the SPICA telescope system, including recent progress of the development of C/SiC mirrors.
机译:航天和天体物理红外望远镜(SPICA)是日本的第三个天文红外卫星项目,该项目是对3.5m冷却望远镜的优化,其目的是继中空红外望远镜(IRTS)和ASTRO-F之后,对中远红外观测进行优化任务。它将使用机械冷却器和有效的辐射冷却系统,这使我们可以拥有一个比以前的太空任务大得多的孔径冷却的(4.5K)望远镜。 SPICA由于其高空间分辨率和对中红外和远红外的空前灵敏度,将解决当今天体物理学中的许多关键问题,从宇宙起源到行星系统的形成。然而,用于低温用途的大孔径尺寸是巨大的挑战,并且需要望远镜系统的大量技术开发。由于技术可行性和可靠性,我们在基准模型中采用单片镜设计。我们将光学性能要求设置为在4.5K的工作温度下衍射极限为5μm。望远镜系统的总重量为700kg,这需要一个非常轻的3.5m主镜以及镜支撑结构。目前,我们正在研究SPICA望远镜的两种候选材料:碳化硅(SiC)和碳纤维增强的碳化硅(C / SiC)。本演示文稿概述了SPICA的任务,并报告了SPICA望远镜系统的当前设计和状态,包括C / SiC反射镜开发的最新进展。

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