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eROSITA camera design andfirst performance measurements with CCDs

机译:使用CCDS erosita相机设计和发表性能测量

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The German X-ray observatory eROSITA (extended ROentgen Survey with an Imaging Telescope Array) is the prime instrument of the new Spectrum-RG mission. Launch of the Russian satellite is planned for the year 2011. The scientific goal of eROSITA is primarily the detection and analysis of 100 thousand clusters of galaxies in order to study the large scale structures in the Universe and to test cosmological models. The therefore required large effective area is obtained by an array of seven identical and parallel aligned Wolter-I telescopes. In the focus of each mirror module, there is a large frame store pnCCD detector, providing a field of view of 1° in diameter. The same X-ray detector type will also be applied for ART-XC, another grazing-incidence telescope system aboard Spectrum-RG, which permits the detection of heavily obscured X-ray sources. These scientific instruments allow the exploration of the X-ray Universe in the energy band from 0.3 keV to 11 keV. During a mission time of at least five years, an all-sky survey, wide as well as deep surveys and pointed observations will be performed. Approval and funding for eROSITA were granted by the German space agency DLR in April 2007. The conceptual design of the X-ray focal plane cameras is presented here comprising electrical, thermal, and mechanical aspects. Key part of the camera is the pnCCD detector chip, which is developed and produced in our semiconductor laboratory, the MPI Halbleiterlabor. The CCD was designed according to the specifications given by the scientific goals of eROSITA. The eROSITA CCD differs apparently from all previously produced frame store pnCCDs by its larger size and format. The CCD image area of the seven eROSITA cameras is in total 58 cm2 large and their number of pixels is about seven times higher than that of the XMM-Newton pnCCD camera. First pnCCD devices were recently produced and tested. Their performance measurements and results are of most importance for eROSITA because the tested CCDs are the control sample of the flight detector production.
机译:德国X射线天文台eROSITA(扩展伦琴调查与成像望远镜阵列)是新的频谱-RG任务的主要工具。俄卫星发射的计划于2011年年内eROSITA的科学目标主要是为了研究宇宙大尺度结构和检验宇宙模型的检测和10万个星系簇的分析。 -I沃尔特望远镜用七位相同的阵列获得的因此,需要大的有效面积和平行排列。在每个反射镜模块的焦点,有一个大的帧存储pnCCD检测器,提供了在直径视图的1°的字段。相同的X射线检测器的类型将也可用于ART-XC,另一掠入射望远镜系统船上频谱-RG,其允许重遮蔽X射线源的检测。这些科学仪器允许X射线宇宙的能带至11千电子伏特的探索,从0.3千电子伏。在至少五年的任务时间,全巡天,宽以及深调查和尖锐的意见将被执行。审批和资金eROSITA是由德国航天局DLR在2007年4月授予的X射线焦平面摄像机的概念设计这里提出包括电,热和机械方面。照相机的关键部分是pnCCD检测器芯片,其被开发并在我们的实验室半导体,所述MPI Halbleiterlabor生产。该CCD是根据由eROSITA的科学目标的规格设计。所述eROSITA CCD从所有之前产生的帧存储pnCCDs通过其较大的尺寸和格式显然不同。七个eROSITA摄像机的CCD图像区域是在总58平方厘米大和其像素数为约大于XMM牛顿pnCCD照相机的高七倍。第一pnCCD设备最近生产和测试。它们的性能测量和结果对于eROSITA最重要的,因为测试的CCD是飞行探测器生产的对照样品。

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