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Modelling of diamond detectors:effects of the poly crystalline structure and a pulse shape analysis

机译:钻石探测器的建模:多晶结构的影响和脉冲形状分析

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Diamond is radiation-hard.This makes CVD diamond films suitable for particle detector applications without a significant degradation in performance due to radiation damage.We have built up a computer simulation of the detection mechanism in diamond detectors.We consider three different morphologies for the CVD diamond films:single crystal (SC),highly oriented (HOD),and randomly oriented polycrystalline (PCD) diamond.Our model of a diamond detector enables us to relate the morphology of the material and the geometry of the system to predict the detector's response.In this paper,we consider two different electrode configurations:parallel plate and interdigitated strips geometry;by applying the Shockley-Ramo theorem we calculate the total induced charge on the electrodes and we analyse some effects related to the presence of defects and other inhomogeneities related to the polycrystalline structure.In particular,we study the non-uniformity of the detector's response and the appearance of slow components in the output signal.
机译:金刚石具有很高的辐射强度,这使得CVD金刚石膜适合于粒子探测器应用,而不会由于辐射损伤而导致性能显着下降。我们建立了金刚石探测器检测机制的计算机模拟,我们考虑了CVD的三种不同形态金刚石膜:单晶(SC),高度取向(HOD)和随机取向的多晶(PCD)金刚石。我们的金刚石探测器模型使我们能够将材料的形态和系统的几何形状联系起来,以预测探测器的响应在本文中,我们考虑了两种不同的电极配置:平行板和交叉指的条形;通过应用Shockley-Ramo定理,我们计算了电极上的总感应电荷,并分析了与缺陷的存在和其他不均匀性相关的一些影响特别是,我们研究了探测器响应的不均匀性和输出信号中的慢速分量。

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