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CdZnTe detector for hard X-ray and low energy gamma-rays focusing telescope

机译:用于硬X射线和低能伽马射线聚焦望远镜的CdZnTe检测器

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The science drivers for a new generation soft gamma-ray mission are naturally focused on the detailed study of the acceleration mechanisms in a variety of cosmic sources. Through the development of high energy optics in the energy energy range 0.05-1 MeV it will be possible to achieve a sensitivity about two orders of magnitude better than the currently operating gamma-ray telescopes. This will open a window for deep studies of many classes of sources: from Galactic X-ray binaries to magnetars, from supernova remnants to Galaxy clusters, from AGNs (Seyfert, blazars, QSO) to the determination of the origin of the hard X-/gamma-ray cosmic background, from the study of antimatter to that of the dark matter. In order to achieve the needed performance, a detector with mm spatial resolution and very high peak efficiency is needed. The instrumental characteristics of this device could eventually allow to detect polarization in a number of objects including pulsars, GRBs and bright AGNs. In this work we focus on the characteristics of the focal plane detector, based on CZT or CdTe semiconductor sensors arranged in multiple planes and viewed by a side detector to enhance gamma-ray absorption in the Compton regime. We report the preliminary results of an optimization study based on simulations and laboratory tests, as prosecution of the former design studies of the GRI mission which constitute the heritage of this activity.
机译:新一代软伽玛射线任务的科学驱动力自然地集中于对各种宇宙源中加速机制的详细研究。通过开发在0.05-1 MeV能量范围内的高能光学器件,可以实现比目前使用的伽马射线望远镜高约两个数量级的灵敏度。这将为深入研究各种来源打开一个窗口:从银河X射线双星到磁星,从超新星残余到银河星团,从AGN(塞弗特,布拉扎尔,QSO)到确定硬X-射线的起源/γ射线宇宙背景,从反物质研究到暗物质研究。为了获得所需的性能,需要具有毫米空间分辨率和非常高的峰值效率的检测器。该设备的仪器特性最终可能允许检测许多物体中的极化,包括脉冲星,GRB和明亮的AGN。在这项工作中,我们将重点放在焦平面探测器的特性上,该探测器基于布置在多个平面中并由侧面探测器观察的CZT或CdTe半导体传感器,以增强康普顿状态下的伽马射线吸收。我们报告了基于模拟和实验室测试的优化研究的初步结果,作为对GRI任务的前期设计研究的起诉,这些研究构成了这项活动的遗产。

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