Development of a high energy gamma-ray telescope for space flight using drift chambers

R. Cuddapah, D. Bertsch, B. Dingus, C. Fichtel, S. Hunter, D. Thompson
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引用次数: 1

Abstract

In order to continue the achievements in high-energy (10 MeV-100-GeV) gamma-ray astronomy made with the Energetic Gamma-Ray Experiment Telescope (EGRET) instrument on the Compton Gamma Ray Observatory (CGRO), a next-generation high-energy gamma-ray telescope with a large increase in sensitivity coupled with improved angular resolution will be required. This telescope is envisioned as a 2-m*2-m active area telescope using drift chambers for the imaging detector. The four major components of the instrument are the anticoincidence shield, the track imaging system, the coincidence/time-of-flight system, and the energy measurement system. The authors discuss the design goals and challenges for the four subsystems and the techniques being used to achieve them, as well as the design and performance of high-speed electronics that are being developed specifically for this application.<>
利用漂移室研制空间飞行用高能伽玛射线望远镜
为了延续康普顿伽玛射线天文台(CGRO)高能伽玛射线实验望远镜(EGRET)在高能(10 mev -100 gev)伽玛射线天文学上取得的成就,需要一种灵敏度大幅提高、角分辨率提高的下一代高能伽玛射线望远镜。该望远镜被设想为一个2米*2米的有源区域望远镜,使用漂移室作为成像探测器。仪器的四个主要组成部分是反符合屏蔽、航迹成像系统、符合/飞行时间系统和能量测量系统。作者讨论了这四个子系统的设计目标和挑战,以及实现这些目标所使用的技术,以及为这一应用专门开发的高速电子设备的设计和性能。
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