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The quest for a third generation of gaseous photon detectors for Cherenkov imaging counters

RICH (Ring Imaging CHerenkov) counters for PID in the high momentum domain and in large acceptance experiments require photon detectors covering extended surface (several square meters) and able to accept Cherenkov photons in a wide angular range. An ideal approach is represented by gaseous photon d...

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Autor principal: Alexeev, M
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2009.05.069
http://cds.cern.ch/record/1264073
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author Alexeev, M
author_facet Alexeev, M
author_sort Alexeev, M
collection CERN
description RICH (Ring Imaging CHerenkov) counters for PID in the high momentum domain and in large acceptance experiments require photon detectors covering extended surface (several square meters) and able to accept Cherenkov photons in a wide angular range. An ideal approach is represented by gaseous photon detectors, which allow covering wide surfaces at affordable costs. The first generation of these detectors was based on the use of organic vapors. The second generation consists of CsI photocathodes and open geometry gaseous detectors (MWPC). In spite of the success of this approach, some limits of the technique arise from the bombardment of the photocathodes by the ions generated in the amplification process and by the photon feedback. A third generation of gaseous photon detectors using closed geometry, as those possible with multistage arrangements of micropattern gaseous detectors, can overcome the observed limitations. We have started an R&D programme to develop a Thick-GEM-based photon detector and we report about our initial studies.
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spelling cern-12640732019-09-30T06:29:59Zdoi:10.1016/j.nima.2009.05.069http://cds.cern.ch/record/1264073engAlexeev, MThe quest for a third generation of gaseous photon detectors for Cherenkov imaging countersDetectors and Experimental TechniquesRICH (Ring Imaging CHerenkov) counters for PID in the high momentum domain and in large acceptance experiments require photon detectors covering extended surface (several square meters) and able to accept Cherenkov photons in a wide angular range. An ideal approach is represented by gaseous photon detectors, which allow covering wide surfaces at affordable costs. The first generation of these detectors was based on the use of organic vapors. The second generation consists of CsI photocathodes and open geometry gaseous detectors (MWPC). In spite of the success of this approach, some limits of the technique arise from the bombardment of the photocathodes by the ions generated in the amplification process and by the photon feedback. A third generation of gaseous photon detectors using closed geometry, as those possible with multistage arrangements of micropattern gaseous detectors, can overcome the observed limitations. We have started an R&D programme to develop a Thick-GEM-based photon detector and we report about our initial studies.oai:cds.cern.ch:12640732009
spellingShingle Detectors and Experimental Techniques
Alexeev, M
The quest for a third generation of gaseous photon detectors for Cherenkov imaging counters
title The quest for a third generation of gaseous photon detectors for Cherenkov imaging counters
title_full The quest for a third generation of gaseous photon detectors for Cherenkov imaging counters
title_fullStr The quest for a third generation of gaseous photon detectors for Cherenkov imaging counters
title_full_unstemmed The quest for a third generation of gaseous photon detectors for Cherenkov imaging counters
title_short The quest for a third generation of gaseous photon detectors for Cherenkov imaging counters
title_sort quest for a third generation of gaseous photon detectors for cherenkov imaging counters
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2009.05.069
http://cds.cern.ch/record/1264073
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