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A simulation study on the focal plane detector of the LAUE project

机译:LAUE项目焦平面探测器的仿真研究

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摘要

The LAUE project, supported by the Italian Space Agency (ASI), is devoted to the development of a long focal length (even 20 m or longer) Laue lens for gamma ray astronomy between 80 and 600 keV. These lenses take advantage of Bragg diffraction to focus radiation onto a small spot drastically improving the signal to noise ratio as well as reducing the required size of the detector significantly. In this paper we present a Monte-Carlo simulation study with MEGALIB to optimize, for space applications, the detector size to achieve high detection efficiency, and to optimize the position resolution of the detector to reconstruct the Point Spread Function of the lens considered for the LAUE project. Then we will show simulations, using the SILVACO semiconductor simulation toolkit, on the optimized detector to estimate its capacitance per channel and depletion voltage. In all of the simulations, two materials were compared; a low density material (Silicon) and a high density material (Germanium).
机译:由意大利航天局(ASI)支持的LAUE项目致力于开发适用于80至600 keV伽马射线天文学的长焦距(甚至20 m或更长)Laue透镜。这些透镜利用布拉格衍射的优势将辐射聚焦在一个小点上,从而极大地提高了信噪比,并显着减小了所需的检测器尺寸。在本文中,我们使用MEGALIB进行了蒙特卡洛仿真研究,以针对太空应用优化探测器尺寸以实现高探测效率,并优化探测器的位置分辨率以重建考虑到透镜的点扩散功能LAUE项目。然后,我们将在优化的检测器上使用SILVACO半导体仿真工具套件显示仿真,以估算其每通道的电容和耗尽电压。在所有模拟中,都比较了两种材料。低密度材料(硅)和高密度材料(锗)。

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