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Physics > Instrumentation and Detectors

arXiv:1604.04550 (physics)
[Submitted on 15 Apr 2016]

Title:Resistive Plate Chamber Digitization in a Hadronic Shower Environment

Authors:Z.Deng, Y.Li, Y.Wang, Q.Yue, Z.Yang, J.Apostolakis, G.Folger, C.Grefe, V.Ivantchenko, A.Ribon, V.Uzhinskiy, D.Boumediene, C.Carloganu, V.Français, G.Cho, D-W.Kim, S.C.Lee, W.Park, S.Vallecorsa, S.Cauwenbergh, M.Tytgat, A.Pingault, N.Zaganidis, E.Brianne, A.Ebrahimi, K.Gadow, P.Göttlicher, C.Günter, O.Hartbrich, B.Hermberg, A.Irles, F.Krivan, K.Krüger, J.Kvasnicka, S.Lu, B.Lutz, V.Morgunov, C.Neubüser, A.Provenza, M.Reinecke, F.Sefkow, S.Schuwalow, H.L.Tran, E.Garutti, S.Laurien, M.Matysek, M.Ramilli, S.Schroeder, B.Bilki, E.Norbeck, D.Northacker, Y.Onel, S.Chang, A.Khan, D.H.Kim, D.J.Kong, Y.D.Oh, K.Kawagoe, H.Hirai, Y.Sudo, T.Suehara, H.Sumida, T.Yoshioka, E.Cortina Gil, S.Mannai, V.Buridon, C.Combaret, L.Caponetto, R.Eté, G.Garillot, G.Grenier, R.Han, J.C.Ianigro, R.Kieffer, I.Laktineh, N.Lumb, H.Mathez, L.Mirabito, A.Petrukhin, A.Steen, J.Berenguer Antequera, E.Calvo Alamillo, M.-C.Fouz, J.Marin, J.Puerta-Pelayo, A.Verdugo, M.Chadeeva, M. Danilov, M.Gabriel, P.Goecke, C.Kiesling, N.vanderKolk, F.Simon, M.Szalay, S.Bilokin, J.Bonis, P.Cornebise, F.Richard, R.Pöschl, J.Rouëné
, A.Thiebault, D.Zerwas, M.Anduze, V.Balagura, K.Belkadhi, V.Boudry, J-C.Brient, R.Cornat, M.Frotin, F.Gastaldi, Y.Haddad, F.Magniette, M.Ruan, M.Rubio-Roy, K.Shpak, H.Videau, D.Yu, S.Callier, S. Conforti di Lorenzo, F.Dulucq, G.Martin-Chassard, Ch.de la Taille, L.Raux, N.Seguin-Moreau, K.Kotera, H.Ono, T.Takeshita, F.Corriveau
et al. (28 additional authors not shown)  You must enable JavaScript to view entire author list.
View a PDF of the paper titled Resistive Plate Chamber Digitization in a Hadronic Shower Environment, by Z.Deng and 127 other authors
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Abstract:The CALICE Semi-Digital Hadron Calorimeter (SDHCAL) technological prototype is a sampling calorimeter using Glass Resistive Plate Chamber detectors with a three-threshold readout as the active medium. This technology is one of the two options proposed for the hadron calorimeter of the International Large Detector for the International Linear Collider. The prototype was exposed to beams of muons, electrons and pions of different energies at the CERN Super Proton Synchrotron. To be able to study the performance of such a calorimeter in future experiments it is important to ensure reliable simulation of its response. In this paper we present our prototype simulation performed with GEANT4 and the digitization procedure achieved with an algorithm called SimDigital. A detailed description of this algorithm is given and the methods to determinate its parameters using muon tracks and electromagnetic showers are explained. The comparison with hadronic shower data shows a good agreement up to 50 GeV. Discrepancies are observed at higher energies. The reasons for these differences are investigated.
Subjects: Instrumentation and Detectors (physics.ins-det); High Energy Physics - Experiment (hep-ex)
Cite as: arXiv:1604.04550 [physics.ins-det]
  (or arXiv:1604.04550v1 [physics.ins-det] for this version)
  https://doi.org/10.48550/arXiv.1604.04550
arXiv-issued DOI via DataCite
Related DOI: https://doi.org/10.1088/1748-0221/11/06/P06014
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From: Arnaud Steen [view email]
[v1] Fri, 15 Apr 2016 15:55:47 UTC (544 KB)
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