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A focal plane detector design for a wide band Laue-lens telescope

机译:宽带劳厄透镜望远镜的焦平面探测器设计

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The energy range above 50 keV is important for the study of many open problems in high energy astrophysics such as, non thermal mechanisms in SNR, the study of the high energy cut-offs in AGN spectra, and the detection of nuclear and annihilation lines. In the framework of the definition of a new mission concept for hard X and soft gamma ray (GRI-Gamma Ray Imager) for the next decade, the use of Laue lenses with broad energy band-passes from 100 to 1000 keV is under study. This kind of instruments will be used for deep study the hard X-ray continuum of celestial sources. This new telescope will require focal plane detectors with high detection efficiency over the entire operative range, an energy resolution of few keV at 500 keV and a sensitivity to linear polarization. We describe a possible configuration for the focal plane detector based on CdTe/CZT pixelated layers stacked together to achieve the required detection efficiency at high energy. Each layer can either operate as a separate position sensitive detector and a polarimeter or together with other layers in order to increase the overall full energy efficiency. We report on the current state of art in high Z spectrometers development and on some activities undergoing. Furthermore we describe the proposed focal plane option with the required resources and an analytical summary of the achievable performance in terms of efficiency and polarimetry.
机译:高于50 keV的能量范围对于研究高能天体物理学中许多未解决的问题非常重要,例如SNR的非热机制,AGN光谱中高能截止的研究以及核线和an灭线的检测。在未来十年为硬X和软伽玛射线(GRI-Gamma Ray Imager)定义新的任务概念的框架内,正在研究使用能级范围为100到1000 keV的劳厄透镜。这种仪器将用于深入研究天体的硬X射线连续体。这种新型望远镜将需要焦平面探测器,该探测器在整个工作范围内具有很高的探测效率,在500 keV时的能量分辨率只有几keV,并且对线性偏振敏感。我们描述了基于堆叠在一起的CdTe / CZT像素化层的焦平面检测器的可能配置,以在高能量下实现所需的检测效率。每层可以用作单独的位置敏感检测器和旋光仪,也可以与其他层一起使用,以提高整体的整体能效。我们报告了高Z光谱仪的最新发展状况以及正在进行的一些活动。此外,我们用所需的资源描述了拟议的焦平面方案,并就效率和极化分析方面对可达到的性能进行了分析总结。

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