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A progress report on the development of the CsI-RICH detector for the ALICE experiment at LHC

The particle identification in ALICE (A Large Ion Collider Experiment) at LHC will be achieved by two complementary systems based on time of flight measurement, at low $p_t$, and on the Ring Imaging Cherenkov (RICH) technique, at $p_t$ ranging from 2 to 5 GeV/$c$, respectively. The High Momentum PID...

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Detalles Bibliográficos
Autores principales: Braem, André, Davenport, Martyn, Di Mauro, A, Goret, B, Paic, G, Piuz, François, Raynaud, J, Santiard, Jean-Claude, Stucchi, S, Williams, T D, Colonna, N, Di Bari, D, Elia, D, Fini, R A, Galantucci, L, Ghidini, B, Grimaldi, A, Monno, E, Nappi, E, Posa, F, Tomasicchio, G
Lenguaje:eng
Publicado: 1997
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0168-9002(98)00092-8
http://cds.cern.ch/record/331195
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author Braem, André
Davenport, Martyn
Di Mauro, A
Goret, B
Paic, G
Piuz, François
Raynaud, J
Santiard, Jean-Claude
Stucchi, S
Williams, T D
Colonna, N
Di Bari, D
Elia, D
Fini, R A
Galantucci, L
Ghidini, B
Grimaldi, A
Monno, E
Nappi, E
Posa, F
Tomasicchio, G
author_facet Braem, André
Davenport, Martyn
Di Mauro, A
Goret, B
Paic, G
Piuz, François
Raynaud, J
Santiard, Jean-Claude
Stucchi, S
Williams, T D
Colonna, N
Di Bari, D
Elia, D
Fini, R A
Galantucci, L
Ghidini, B
Grimaldi, A
Monno, E
Nappi, E
Posa, F
Tomasicchio, G
author_sort Braem, André
collection CERN
description The particle identification in ALICE (A Large Ion Collider Experiment) at LHC will be achieved by two complementary systems based on time of flight measurement, at low $p_t$, and on the Ring Imaging Cherenkov (RICH) technique, at $p_t$ ranging from 2 to 5 GeV/$c$, respectively. The High Momentum PID (HMPID) system will cover $\sim$5\% of the phase space, the single arm detector array beeing composed by seven 1.3$\times$1.3 m$^2$ CsI-RICH modules placed at 4.7 m from the interaction point where a density of about 50 particles/m$^2$ is expected.\\ A 1 m$^2$ prototype, 2/3 of HMPID module size, has been successfully tested at the CERN/PS beam where 18 photoelectrons per event have been obtained with 3 GeV/c pions and 10 mm liquid $\mathrm{C}_6\mathrm{F}_{14}$ radiator. Mechanical problems related to the liquid radiator vessel construction have been solved and the prototype, fully equipped, will be tested at the CERN/SPS to investigate the PID capability in high particle density events.\\ In this report, after an introductory discussion on the requirements for PID in ALICE, the HMPID prototype is described and the main results of beam tests on large area CsI photocathodes, operated in RICH detectors, are given.
id cern-331195
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1997
record_format invenio
spelling cern-3311952019-09-30T06:29:59Zdoi:10.1016/S0168-9002(98)00092-8http://cds.cern.ch/record/331195engBraem, AndréDavenport, MartynDi Mauro, AGoret, BPaic, GPiuz, FrançoisRaynaud, JSantiard, Jean-ClaudeStucchi, SWilliams, T DColonna, NDi Bari, DElia, DFini, R AGalantucci, LGhidini, BGrimaldi, AMonno, ENappi, EPosa, FTomasicchio, GA progress report on the development of the CsI-RICH detector for the ALICE experiment at LHCDetectors and Experimental TechniquesThe particle identification in ALICE (A Large Ion Collider Experiment) at LHC will be achieved by two complementary systems based on time of flight measurement, at low $p_t$, and on the Ring Imaging Cherenkov (RICH) technique, at $p_t$ ranging from 2 to 5 GeV/$c$, respectively. The High Momentum PID (HMPID) system will cover $\sim$5\% of the phase space, the single arm detector array beeing composed by seven 1.3$\times$1.3 m$^2$ CsI-RICH modules placed at 4.7 m from the interaction point where a density of about 50 particles/m$^2$ is expected.\\ A 1 m$^2$ prototype, 2/3 of HMPID module size, has been successfully tested at the CERN/PS beam where 18 photoelectrons per event have been obtained with 3 GeV/c pions and 10 mm liquid $\mathrm{C}_6\mathrm{F}_{14}$ radiator. Mechanical problems related to the liquid radiator vessel construction have been solved and the prototype, fully equipped, will be tested at the CERN/SPS to investigate the PID capability in high particle density events.\\ In this report, after an introductory discussion on the requirements for PID in ALICE, the HMPID prototype is described and the main results of beam tests on large area CsI photocathodes, operated in RICH detectors, are given.CERN-PPE-97-096oai:cds.cern.ch:3311951997-07-10
spellingShingle Detectors and Experimental Techniques
Braem, André
Davenport, Martyn
Di Mauro, A
Goret, B
Paic, G
Piuz, François
Raynaud, J
Santiard, Jean-Claude
Stucchi, S
Williams, T D
Colonna, N
Di Bari, D
Elia, D
Fini, R A
Galantucci, L
Ghidini, B
Grimaldi, A
Monno, E
Nappi, E
Posa, F
Tomasicchio, G
A progress report on the development of the CsI-RICH detector for the ALICE experiment at LHC
title A progress report on the development of the CsI-RICH detector for the ALICE experiment at LHC
title_full A progress report on the development of the CsI-RICH detector for the ALICE experiment at LHC
title_fullStr A progress report on the development of the CsI-RICH detector for the ALICE experiment at LHC
title_full_unstemmed A progress report on the development of the CsI-RICH detector for the ALICE experiment at LHC
title_short A progress report on the development of the CsI-RICH detector for the ALICE experiment at LHC
title_sort progress report on the development of the csi-rich detector for the alice experiment at lhc
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/S0168-9002(98)00092-8
http://cds.cern.ch/record/331195
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