A study of gas contaminants and interaction with materials in RPC closed loop systems

Resistive Plate Counters (RPC) detectors at the Large Hadron Collider (LHC) experiments use gas recirculation systems to cope with large gas mixture volumes and costs. In this paper a long-term systematic study about gas purifiers, gas contaminants and detector performance is discussed. The study ai...

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Veröffentlicht in:Journal of instrumentation 2013-03, Vol.8 (3), p.1-9
Hauptverfasser: Colafranceschi, S, Aurilio, R, Benussi, L, Bianco, S, Passamonti, L, Piccolo, D, Pierluigi, D, Russo, A, Ferrini, M, Greci, T, Saviano, G, Vendittozzi, C, Abbrescia, M, Calabria, C
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container_end_page 9
container_issue 3
container_start_page 1
container_title Journal of instrumentation
container_volume 8
creator Colafranceschi, S
Aurilio, R
Benussi, L
Bianco, S
Passamonti, L
Piccolo, D
Pierluigi, D
Russo, A
Ferrini, M
Greci, T
Saviano, G
Vendittozzi, C
Abbrescia, M
Calabria, C
description Resistive Plate Counters (RPC) detectors at the Large Hadron Collider (LHC) experiments use gas recirculation systems to cope with large gas mixture volumes and costs. In this paper a long-term systematic study about gas purifiers, gas contaminants and detector performance is discussed. The study aims at measuring the lifetime of purifiers with new and used cartridge material along with contaminants release in the gas system. During the data-taking the response of several RPC double-gap detectors was monitored in order to characterize the correlation between dark currents, filter status and gas contaminants.
doi_str_mv 10.1088/1748-0221/8/03/T03008
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source Institute of Physics Journals
subjects Cartridges
Contaminants
Correlation
Dark current
Detectors
Instrumentation
Large Hadron Collider
Resistive plate chambers
title A study of gas contaminants and interaction with materials in RPC closed loop systems
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