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The following article is Open access

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

Published 7 November 2016 © CERN 2016
, , Citation W. Riegler 2016 JINST 11 P11002 DOI 10.1088/1748-0221/11/11/P11002

1748-0221/11/11/P11002

Abstract

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, MICROMEGAS 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.

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10.1088/1748-0221/11/11/P11002