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Electric fields, weighting fields, signals and charge diffusion in detectors including resistive materials

机译:检测器中的电场,加权场,信号和电荷扩散,包括电阻材料

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摘要

In this report we discuss static and time dependent electric fields in detector geometries with an arbitrary number of parallel layers of a given permittivity and weak conductivity. We derive the Green's functions i.e. the field of a point charge, as well as the weighting fields for readout pads and readout strips in these geometries. The effect of 'bulk' resistivity on electric fields and signals is investigated. The spreading of charge on thin resistive layers is also discussed in detail, and the conditions for allowing the effect to be described by the diffusion equation is discussed. We apply the results to derive fields and induced signals in Resistive Plate Chambers, Micromega detectors including resistive layers for charge spreading and discharge protection as well as detectors using resistive charge division readout like the MicroCAT detector. We also discuss in detail how resistive layers affect signal shapes and increase crosstalk between readout electrodes.
机译:在这份报告中,我们讨论了探测器几何中具有任意数量的给定电容率和弱电导率的平行层的静电场和时间相关电场。我们导出格林函数,即点电荷的字段,以及这些几何形状中的读出板和读出条的加权字段。研究了“本体”电阻率对电场和信号的影响。还详细讨论了电荷在薄电阻层上的扩散,并讨论了允许用扩散方程描述效应的条件。我们将结果应用于电阻板腔室,Micromega检测器(包括用于电荷扩散和放电保护的电阻层)以及使用电阻电荷分配读数的检测器(如MicroCAT检测器)中的场和感应信号。我们还将详细讨论电阻层如何影响信号形状并增加读出电极之间的串扰。

著录项

  • 作者

    Riegler, Werner;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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