In this paper a model simulating the main aspects of avalanche growth and signal development in Resistive Plate Chambers (RPCs) is presented. The model has been used to compute the performances, in particular, charge distribution and efficiency of single- double- and multi-gap RPCs, and to compare them with the available experimental results. This model could be used to optimize the characteristics of this type of detector with a view to its use in the future large experiments at LHC: ATLAS and CMS. (C) 1998 Published by Elsevier Science B.V. All rights reserved
Resistive plate chambers (RPCs) are widely used to detect high-energy charged particles, especially ...
Two large double-gap resistive plate chambers, with 2 and 3 mm gap widths, were tested to study thei...
We investigated charge properties for narrow gap, wide gap and multigap resistive plate chambers (RP...
Abstract In this paper a model simulating the main aspects of avalanche growth and signal developm...
A model to simulate the avalanche formation process and the induced signal in a Resistive Plate Cham...
We report on the progress in the simulation of resistive plate chambers (RPCs). We investigate the i...
Resistive Plate Chambers (RPCs) are gaseous parallel plate avalanche detectors that implement electr...
We present a detailed analysis of the time and the charge signals of a prototype double-gap resistiv...
New results about the simulation of Resistive Plate Chambers are reported; particular enphasys is pu...
New results about the simulation of Resistive Plate Chambers are reported; particular enphasys is pu...
We discuss detailed models for detector physics processes in Resis-tive Plate Chambers, in particula...
This paper has the purpose to study the rate capability of the Resistive Plate Chamber, RPC, starti...
We present the detailed analysis of the time and charge signals of a prototype double gap resistive ...
Simulation of the avalanche processes inside a gaseous parallel-plate detector has been carried out ...
The time response function of RPCs is derived. First, primary electron distributions in the RPC gas ...
Resistive plate chambers (RPCs) are widely used to detect high-energy charged particles, especially ...
Two large double-gap resistive plate chambers, with 2 and 3 mm gap widths, were tested to study thei...
We investigated charge properties for narrow gap, wide gap and multigap resistive plate chambers (RP...
Abstract In this paper a model simulating the main aspects of avalanche growth and signal developm...
A model to simulate the avalanche formation process and the induced signal in a Resistive Plate Cham...
We report on the progress in the simulation of resistive plate chambers (RPCs). We investigate the i...
Resistive Plate Chambers (RPCs) are gaseous parallel plate avalanche detectors that implement electr...
We present a detailed analysis of the time and the charge signals of a prototype double-gap resistiv...
New results about the simulation of Resistive Plate Chambers are reported; particular enphasys is pu...
New results about the simulation of Resistive Plate Chambers are reported; particular enphasys is pu...
We discuss detailed models for detector physics processes in Resis-tive Plate Chambers, in particula...
This paper has the purpose to study the rate capability of the Resistive Plate Chamber, RPC, starti...
We present the detailed analysis of the time and charge signals of a prototype double gap resistive ...
Simulation of the avalanche processes inside a gaseous parallel-plate detector has been carried out ...
The time response function of RPCs is derived. First, primary electron distributions in the RPC gas ...
Resistive plate chambers (RPCs) are widely used to detect high-energy charged particles, especially ...
Two large double-gap resistive plate chambers, with 2 and 3 mm gap widths, were tested to study thei...
We investigated charge properties for narrow gap, wide gap and multigap resistive plate chambers (RP...