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Lessons learned during construction and test of the GLAST Large Area Telescope Tracker

机译:在GLAST大面积望远镜跟踪器的构建和测试过程中吸取的教训

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摘要

The GLAST Large Area Telescope (LAT) is a satellite gamma-ray observatory designed to explore the sky in the energy range 20 MeV approx = 300 GeV, a region populated by emissions from the most energetic and mysterious objects in the cosmos, like black holes, AGNs, supernovae, gamma-ray bursters. The silicon-strip tracker is the heart of the photon detection system, and with its 80 m~2 of surface and almost 1 M channels is one of the largest silicon tracker ever built. Its construction, to be completed by 2006, and the stringent requirements from operation in space, represent a major technological challenge. Critical design, technology and system engineering issues are addressed in this paper, as well as the approach being followed during construction, test and qualification of the LAT silicon tracker.
机译:GLAST大面积望远镜(LAT)是卫星伽玛射线天文台,旨在探索20 MeV约= 300 GeV能量范围内的天空,该区域由宇宙中最活跃和神秘的物体(如黑洞)发出的辐射所占据,AGN,超新星,伽马射线爆发器。硅条跟踪器是光子检测系统的核心,它的表面面积为80 m〜2,通道接近1 M,是有史以来最大的硅跟踪器之一。它的建设将于2006年完成,太空操作的严格要求也代表了一项重大的技术挑战。本文讨论了关键的设计,技术和系统工程问题,以及LAT硅跟踪器的构建,测试和鉴定过程中要遵循的方法。

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