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Article | |
Report number | arXiv:1411.7215 ; CALICE-PUB-2014-002 |
Title | Testing Hadronic Interaction Models using a Highly Granular Silicon-Tungsten Calorimeter |
Author(s) |
Bilki, B. (Argonne (main)) ; Repond, J. (Argonne (main)) ; Schlereth, J. (Argonne (main)) ; Xia, L. (Argonne (main)) ; Deng, Z. (Tsinghua U., Beijing, Dept. Eng. Phys.) ; Li, Y. (Tsinghua U., Beijing, Dept. Eng. Phys.) ; Wang, Y. (Tsinghua U., Beijing, Dept. Eng. Phys.) ; Yue, Q. (Tsinghua U., Beijing, Dept. Eng. Phys.) ; Yang, Z. (Tsinghua U., Beijing, Dept. Eng. Phys.) ; Eigen, G. (Bergen U.) ; Mikami, Y. (Birmingham U.) ; Price, T. (Birmingham U.) ; Watson, N.K. (Birmingham U.) ; Thomson, M.A. (Cambridge U.) ; Ward, D.R. (Cambridge U.) ; Benchekroun, D. (Hassan U., II, Ain Chock) ; Hoummada, A. (Hassan U., II, Ain Chock) ; Khoulaki, Y. (Hassan U., II, Ain Chock) ; Carloganu, C. (Clermont-Ferrand U.) ; Chang, S. (Kyungpook Natl. U.) ; Khan, A. (Kyungpook Natl. U.) ; Kim, D.H. (Kyungpook Natl. U.) ; Kong, D.J. (Kyungpook Natl. U.) ; Oh, Y.D. (Kyungpook Natl. U.) ; Blazey, G.C. (Northern Illinois U.) ; Dyshkant, A. (Northern Illinois U.) ; Francis, K. (Northern Illinois U.) ; Lima, J.G.R. (Northern Illinois U.) ; Salcido, P. (Northern Illinois U.) ; Zutshi, V. (Northern Illinois U.) ; Boisvert, V. (Royal Holloway, U. of London) ; Green, B. (Royal Holloway, U. of London) ; Misiejuk, A. (Royal Holloway, U. of London) ; Salvatore, F. (Royal Holloway, U. of London) ; Kawagoe, K. (Kyushu U.) ; Miyazaki, Y. (Kyushu U.) ; Sudo, Y. (Kyushu U.) ; Suehara, T. (Kyushu U.) ; Tomita, T. (Kyushu U.) ; Ueno, H. (Kyushu U.) ; Yoshioka, T. (Kyushu U.) ; Apostolakis, J. (CERN) ; Folger, G. (CERN) ; Ivantchenko, V. (CERN) ; Ribon, A. (CERN) ; Uzhinskiy, V. (CERN) ; Cauwenbergh, S. (Gent U.) ; Tytgat, M. (Gent U.) ; Zaganidis, N. (Gent U.) ; Hostachy, J.Y. (LPSC, Grenoble) ; Morin, L. (LPSC, Grenoble) ; Gadow, K. (DESY) ; Göttlicher, P. (DESY) ; Günter, C. (DESY) ; Krüger, K. (DESY) ; Lutz, B. (DESY) ; Reinecke, M. (DESY) ; Sefkow, F. (DESY) ; Feege, N. (Hamburg U.) ; Garutti, E. (Hamburg U.) ; Laurien, S. (Hamburg U.) ; Lu, S. (Hamburg U.) ; Marchesini, I. (Northern Illinois U. ; Hamburg U.) ; Matysek, M. (Hamburg U.) ; Ramilli, M. (Hamburg U.) ; Kaplan, A. (Heidelberg U.) ; Norbeck, E. (Iowa U.) ; Northacker, D. (Iowa U.) ; Onel, Y. (Iowa U.) ; Kim, E.J. (Chonbuk Natl. U.) ; van Doren, B. (Kansas U.) ; Wilson, G.W. (Kansas U.) ; Wing, M. (University Coll. London ; DESY ; Hamburg U.) ; Bobchenko, B. (Moscow Phys. Eng. Inst. ; Moscow, ITEP) ; Chadeeva, M. (Moscow Phys. Eng. Inst. ; Moscow, ITEP) ; Chistov, R. (Moscow, ITEP) ; Danilov, M. (Moscow Phys. Eng. Inst. ; Moscow, ITEP) ; Drutskoy, A. (Moscow Phys. Eng. Inst. ; Moscow, ITEP) ; Epifantsev, A. (Moscow, ITEP) ; Markin, O. (Moscow, ITEP) ; Mizuk, R. (Moscow Phys. Eng. Inst. ; Moscow, ITEP) ; Novikov, E. (Moscow, ITEP) ; Popov, V. (Moscow, ITEP) ; Rusinov, V. (Moscow Phys. Eng. Inst. ; Moscow, ITEP) ; Tarkovsky, E. (Moscow Phys. Eng. Inst. ; Moscow, ITEP) ; Besson, D. (Moscow Phys. Eng. Inst.) ; Popova, E. (Moscow Phys. Eng. Inst.) ; Gabriel, M. (Munich, Max Planck Inst.) ; Kiesling, C. (Munich, Max Planck Inst.) ; Simon, F. (Munich, Max Planck Inst.) ; Soldner, C. (Munich, Max Planck Inst.) ; Szalay, M. (Munich, Max Planck Inst.) ; Tesar, M. (Munich, Max Planck Inst.) ; Weuste, L. (Munich, Max Planck Inst.) ; Amjad, M.S. (Orsay, LAL) ; Bonis, J. (Orsay, LAL) ; Callier, S. (Orsay, LAL) ; Conforti di Lorenzo, S. (Orsay, LAL) ; Cornebise, P. (Orsay, LAL) ; Doublet, Ph. (Orsay, LAL) ; Dulucq, F. (Orsay, LAL) ; Faucci-Giannelli, M. (Orsay, LAL) ; Fleury, J. (Orsay, LAL) ; Frisson, T. (Orsay, LAL) ; Kégl, B. (Orsay, LAL) ; van der Kolk, N. (Orsay, LAL) ; Li, H. (Orsay, LAL) ; Martin-Chassard, G. (Orsay, LAL) ; Richard, F. (Orsay, LAL) ; de la Taille, Ch. (Orsay, LAL) ; Pöschl, R. (Orsay, LAL) ; Raux, L. (Orsay, LAL) ; Rouëne, J. (Orsay, LAL) ; Seguin-Moreau, N. (Orsay, LAL) ; Anduze, M. (Ecole Polytechnique) ; Balagura, V. (Ecole Polytechnique) ; Becheva, E. (Ecole Polytechnique) ; Boudry, V. (Ecole Polytechnique) ; Brient, J.-C. (Ecole Polytechnique) ; Cornat, R. (Ecole Polytechnique) ; Frotin, M. (Ecole Polytechnique) ; Gastaldi, F. (Ecole Polytechnique) ; Magniette, F. (Ecole Polytechnique) ; Matthieu, A. (Ecole Polytechnique) ; Mora de Freitas, P. (Ecole Polytechnique) ; Videau, H. (Ecole Polytechnique) ; Augustin, J.-E. (Paris U., VI-VII) ; David, J. (Paris U., VI-VII) ; Ghislain, P. (Paris U., VI-VII) ; Lacour, D. (Paris U., VI-VII) ; Lavergne, L. (Paris U., VI-VII) ; Zacek, J. (Charles U.) ; Cvach, J. (Prague, Inst. Phys.) ; Gallus, P. (Prague, Inst. Phys.) ; Havranek, M. (Prague, Inst. Phys.) ; Janata, M. (Prague, Inst. Phys.) ; Kvasnicka, J. (Prague, Inst. Phys.) ; Lednicky, D. (Prague, Inst. Phys.) ; Marcisovsky, M. (Prague, Inst. Phys.) ; Polak, I. (Prague, Inst. Phys.) ; Popule, J. (Prague, Inst. Phys.) ; Tomasek, L. (Prague, Inst. Phys.) ; Tomasek, M. (Prague, Inst. Phys.) ; Ruzicka, P. (Prague, Inst. Phys.) ; Sicho, P. (Prague, Inst. Phys.) ; Smolik, J. (Prague, Inst. Phys.) ; Vrba, V. (Prague, Inst. Phys.) ; Zalesak, J. (Prague, Inst. Phys.) ; Jeans, D. (Tokyo U.) ; Götze, M. (Wuppertal U.) |
Publication | 2015-09-11 |
Imprint | 2014-11-26 |
Number of pages | 15 |
Note | 28 pages, 24 figures, accepted for publication in NIM A |
In: | Nucl. Instrum. Methods Phys. Res., A 794 (2015) 240-254 |
DOI | 10.1016/j.nima.2015.05.009 |
Subject category | Detectors and Experimental Techniques ; 9: Advanced infrastructures for detector R&D ; 9.5:Highly Granular Calorimetry ; hep-ex ; Particle Physics - Experiment ; physics.ins-det |
Accelerator/Facility, Experiment | CALICE |
Abstract | A detailed study of hadronic interactions is presented using data recorded with the highly granular CALICE silicon-tungsten electromagnetic calorimeter. Approximately 350,000 selected negatively charged pion events at energies between 2 and 10 GeV have been studied. The predictions of several physics models available within the Geant4 simulation tool kit are compared to this data. A reasonable overall description of the data is observed; the Monte Carlo predictions are within 20% of the data, and for many observables much closer. The largest quantitative discrepancies are found in the longitudinal and transverse distributions of reconstructed energy. |
Copyright/License | arXiv nonexclusive-distrib. 1.0 publication: © 2015-2024 CERN (License: CC-BY-4.0) |