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The Camera of the Microchannel X-ray Telescope Onboard the SVOM Mission

Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE(2014)

CEA Saclay | Max Planck Inst Extraterr Phys | CNES

Cited 4|Views18
Abstract
The Microchannel X-Ray Telescope will be implemented on board the SVOM space mission to observe the afterglow of gamma-ray bursts and localize them with 2 arcmin precision. The optical system is based on microchannel plates assembling in Wolter-I configuration to focus the X-rays in the focal plane, like done for the MIXS telescope of the BepiColombo ESA mission. The sensor part is a 256 × 256 pixel pnCCD from the Max-Planck Institute for Extraterrestrial Physics for high resolution spectroscopy and high quantum efficiency over 0.2 – 10 keV energy range, based on the same technology and design as the eROSITA telescopes for the Russian-German SRG mission. CEA-Irfu (Saclay) is in charge of the design and the realization of the camera, including the focal plane, the calibration wheel, the front-end electronics, the structure housing for background shielding and the active cooling system. A prototype of the full detection chain and the acquisition system was set up. The paper presents the preliminary design of the electrical, mechanical and thermal architectures of the camera. It focuses on the fabrication and testing of the critical elements of the design and concludes on the on-going developments.
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Key words
CAMEX,focal plane,front-end electronics,gamma-ray bursts,pnCCD,X-ray spectroscopy
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要点】:本文介绍了SVOM任务中微通道X射线望远镜的相机设计、关键部件的制造与测试,以及初步的电气、机械和热架构设计。

方法】:研究团队采用微通道板组装成Wolter-I配置的光学系统,搭配Max-Planck Institute for Extraterrestrial Physics提供的256 × 256像素pnCCD传感器,实现高分辨率光谱学和0.2 – 10 keV能量范围内的高量子效率。

实验】:研究团队搭建了全检测链和采集系统的原型,并对关键部件进行了制造和测试,但未提及具体使用的数据集名称。