Title :
Simulation of space charge effects in resistive plate chambers
Author :
Lippmann, Christian ; Riegler, Werner
Author_Institution :
EP Div., CERN, Geneva, Switzerland
Abstract :
Multigap resistive plate chambers with 0.3-mm gas gaps operated in avalanche mode at atmospheric pressure have reached timing accuracies below 50 ps (standard deviation) with efficiencies above 99% . The avalanches in high homogeneous electric fields of 100 kV/cm are strongly influenced by space charge effects which are the main topic of this paper. We extend a previously discussed Monte Carlo simulation model of avalanches in resistive plate chambers by the dynamic calculation of the electric field in the avalanches. We complete the previously presented results on time resolution and efficiency data with simulated charge spectra. The simulated data shows good agreement with measurements. The detailed simulation of the avalanche saturation due to the space charge fields explains the small observed charges, the shape of the spectra, and the linear increase of average charges with high voltage.
Keywords :
Monte Carlo methods; avalanche photodiodes; high energy physics instrumentation computing; ionisation chambers; nuclear electronics; readout electronics; timing; 0.3 mm; Monte Carlo simulation model; avalanche mode; avalanche saturation; high homogeneous electric fields; resistive plate chambers; space charge effects; timing accuracies; Current measurement; Detectors; Electrons; Geometry; Ionization; Physics; Shape measurement; Space charge; Timing; Voltage;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2003.814536