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Pion and proton showers in the CALICE scintillator-steel analogue hadron calorimeter

B. Bilki J. Repond L. Xia G. Eigen M. A. Thomson D. R. Ward D. Benchekroun A. Hoummada Y. Khoulaki S. Chang A. Khan D. H. Kim D. J. Kong Y. D. Oh G. C. Blazey A. Dyshkant K. Francis J. G. R. Lima R. Salcido V. Zutshi F. Salvatore K. Kawagoe Y. Miyazaki Y. Sudo T. Suehara T. Tomita H. Ueno T. Yoshioka J. Apostolakis D. Dannheim G. Folger V. Ivantchenko W. Klempt A. -I. Lucaci-Timoce A. Ribon D. Schlatter E. Sicking V. Uzhinskiy J. Giraud 1 D. Grondin 1 J.Y. Hostachy 1 L. Morin 1 E. Brianne U. Cornett D. David A. Ebrahimi G. Falley K. Gadow P. Göttlicher C. Günter O. Hartbrich B. Hermberg S. Karstensen F. Krivan K. Krüger S. Lu B. Lutz S. Morozov V. Morgunov C. Neubüser M. Reinecke F. Sefkow P. Smirnov H. L. Tran N. Feege E. Garutti J. Haller I. Marchesini J. Samson K. Briggl P. Eckert T. Harion Y. Munwes H. -Ch. Schultz-Coulon W. Shen R. Stamen B. van Doren G. W. Wilson M. Wing C. Combaret 2 L. Caponetto 2 R. Eté 2 G. Grenier 2 R. Han 2 J. C. Ianigro 2 R. Kieffer 2 I. Laktineh 2 N. Lumb 2 H. Mathez 2 L. Mirabito 2 A. Petrukhin 2 A. Steen 2 J. Berenguer Antequera E. Calvo Alamillo M. -C. Fouz J. Marin J. Puerta-Pelayo A. Verdugo F. Corriveau B. Bobchenko R. Chistov M. Chadeeva M. Danilov A. Drutskoy A. Epifantsev O. Markin D. Mironov R. Mizuk E. Novikov V. Rusinov E. Tarkovsky D. Besson P. Buzhan A. Ilyin E. Popova M. Gabriel C. Kiesling N. van der Kolk F. Simon C. Soldner M. Szalay M. Tesar L. Weuste M. S. Amjad 3 J. Bonis 3 S. Conforti Di Lorenzo 3 P. Cornebise 3 T. Frisson 3 F. Richard 3 R. Pöschl 3 J. Rouëné 3 M. Anduze 4 V. Boudry 4 J-C. Brient 4 C. Clerc 4 R. Cornat 4 M. Frotin 4 F. Gastaldi 4 A. Matthieu 4 P. Mora de Freitas 4 G. Musat 4 M. Ruan 4 H. Videau 4 S. Callier F. Dulucq J. Fleury G. Martin-Chassard L. Raux N. Seguin-Moreau Ch. de la Taille J. Zacek J. Cvach P. Gallus M. Havranek M. Janata J. Kvasnicka D. Lednicky M. Marcisovsky I. Polak J. Popule L. Tomasek M. Tomasek P. Sicho J. Smolik V. Vrba J. Zalesak D. Jeans S. Weber
Abstract : Showers produced by positive hadrons in the highly granular CALICE scintillator-steel analogue hadronic calorimeter were studied. The experimental data were collected at CERN and FNAL for single particles with initial momenta from 10 to 80 GeV/c. The calorimeter response and resolution and spatial characteristics of shower development for proton- and pion-induced showers for test beam data and simulations using Geant4 version 9.6 are compared.
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B. Bilki, J. Repond, L. Xia, G. Eigen, M. A. Thomson, et al.. Pion and proton showers in the CALICE scintillator-steel analogue hadron calorimeter. Journal of Instrumentation, IOP Publishing, 2015, 10, pp.P04014. ⟨10.1088/1748-0221/10/04/P04014⟩. ⟨in2p3-01092573⟩

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