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Basics of numerical simulations of the signals from GEM detector

机译:来自GEM探测器的信号数值模拟的基础知识

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The Gas Electron Multiplier (GEM) is a detector used to register ionizing radiation, e.g., soft X-rays. The detector of this type, built and developed at the IPPLM institute, allows registering X-rays in the energy range of 2-20keV and determining its intensity in time, as well as its spatial position and energy. Simulating the work of such a detector, performed in parallel to experimental research, and sometimes preceding it, allows for optimization of construction and operation parameters of this detector with respect to the requirements set in the experiment, and allows for a better understanding of the physical processes occurring in the detector. The paper presents how simulations are performed, i.e. describes applied programs, main stages of simulation such as the construction of a three-dimensional model of the detector for calculations, the efficiency of X-ray detection, its conversion to primary electrons and the process of avalanche formation. Finally, the results obtained in this way are also presented.
机译:气体电子倍增器(GEM)是用于注册电离辐射的探测器,例如软X射线。在IPPLM研究所构建和开发的这种类型的探测器允许在2-20keV的能量范围内注册X射线并确定其强度及其空间位置和能量。模拟这种检测器的工作,并行于实验研究,并且有时在其之前进行,允许在实验中设置的要求优化该探测器的构造和操作参数,并允许更好地了解物理在探测器中发生的进程。本文提出了如何执行仿真,即描述应用程序,模拟的主要阶段,如构建检测器的三维模型,用于计算,X射线检测的效率,其转换为初级电子和过程雪崩形成。最后,还提出了以这种方式获得的结果。

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