Skip to main navigation Skip to search Skip to main content

Hadron shower decomposition in the highly granular CALICE analogue hadron calorimeter

  • G. Eigen
  • , T. Price
  • , N. K. Watson
  • , J. S. Marshall
  • , M. A. Thomson
  • , D. R. Ward
  • , D. Benchekroun
  • , A. Hoummada
  • , Y. Khoulaki
  • , J. Apostolakis
  • , A. Dotti
  • , G. Folger
  • , V. Ivantchenko
  • , A. Ribon
  • , V. Uzhinskiy
  • , J. Y. Hostachy
  • , L. Morin
  • , 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. Schröder, K. Briggl, P. Eckert, Y. Munwes, H. Ch Schultz-Coulon, W. Shen, R. Stamen, B. Bilki, E. Norbeck, D. Northacker, Y. Onel, B. Van Doren, G. W. Wilson, K. Kawagoe, H. Hirai, Y. Sudo, T. Suehara, H. Sumida, S. Takada, T. Tomita, T. Yoshioka, M. Wing, A. Bonnevaux, C. Combaret, L. Caponetto, G. Grenier, R. Han, J. C. Ianigro, R. Kieffer, I. Laktineh, N. Lumb, H. Mathez, L. Mirabito, A. Steen, J. Berenguer Antequera, E. Calvo Alamillo, M. C. Fouz, J. Marin, J. Puerta-Pelayo, A. Verdugo, B. Bobchenko, O. Markin, E. Novikov, V. Rusinov, E. Tarkovsky, N. Kirikova, V. Kozlov, P. Smirnov, Y. Soloviev, D. Besson, P. Buzhan, M. Chadeeva, M. Danilov, A. Drutskoy, A. Ilyin, D. Mironov, R. Mizuk, E. Popova, M. Gabriel, P. Goecke, C. Kiesling, N. Van Der Kolk, F. Simon, M. Szalay, S. Bilokin, J. Bonis, P. Cornebise, R. Pöschl, F. Richard, A. Thiebault, D. Zerwas, M. Anduze, V. Balagura, E. Becheva, V. Boudry, J. C. Brient, J. B. Cizel, C. Clerc, R. Cornat, M. Frotin, F. Gastaldi, F. Magniette, P. Mora De Freitas, G. Musat, S. Pavy, M. Rubio-Roy, M. Ruan, H. Videau, S. Callier, F. Dulucq, G. Martin-Chassard, L. Raux, N. Seguin-Moreau, Ch De La Taille, J. Cvach, P. Gallus, M. Havranek, M. Janata, D. Lednicky, M. Marcisovsky, I. Polak, J. Popule, L. Tomasek, M. Tomasek, P. Sicho, J. Smolik, V. Vrba, J. Zalesak, K. Kotera, H. Ono, T. Takeshita, S. Ieki, Y. Kamiya, W. Ootani, N. Shibata, D. Jeans, S. Komamiya, H. Nakanishi
  • University of Bergen
  • University of Birmingham
  • University of Cambridge
  • Université Hassan II Aïn Chock - Casablanca et LASAARE
  • European Organization for Nuclear Research
  • LTHE (UMR 5564 CNRS/IRD/Université de Grenoble)
  • c/o DESY
  • Universität Hamburg
  • University of Heidelberg
  • University of Iowa
  • University of Kansas
  • Kyushu University
  • University College London
  • IGFL, Université de Lyon, Université Lyon 1
  • Centro de Investigaciones Energéticas Medioambientales y Tecnológicas (CIEMAT)
  • Institute for Theoretical and Experimental Physics
  • National Research Nuclear University MEPhI
  • P.N. Lebedev Physical Institute of the Russian Academy of Sciences
  • Max-Planck-Institut für Physik
  • Laboratoire de l'Accélérateur Linéaire
  • Ip Paris
  • Institute of Physics of the Czech Academy of Sciences
  • Shinshu University
  • University of Tokyo

Research output: Contribution to journalArticlepeer-review

10 Citations (Scopus)

Abstract

The spatial development of hadronic showers in the CALICE scintillator-steel analogue hadron calorimeter is studied using test beam data collected at CERN and FNAL for single positive pions and protons with initial momenta in the range of 10-80 GeV/c. Both longitudinal and radial development of hadron showers are parametrised with two-component functions. The parametrisation is fit to test beam data and simulations using the QGSP-BERT and FTFP-BERT physics lists from GEANT4 version 9.6. The parameters extracted from data and simulated samples are compared for the two types of hadrons. The response to pions and the ratio of the non-electromagnetic to the electromagnetic calorimeter response, h/e, are estimated using the extrapolation and decomposition of the longitudinal profiles.

Original languageEnglish
Article numberP06013
JournalJournal of Instrumentation
Volume11
Issue number6
DOIs
Publication statusPublished - 23 Jun 2016

Keywords

  • Calorimeter methods
  • Detector modelling and simulations I (interaction of radiation with matter
  • Performance of High Energy Physics Detectors
  • etc)
  • interaction of hadrons with matter
  • interaction of photons with matter

Fingerprint

Dive into the research topics of 'Hadron shower decomposition in the highly granular CALICE analogue hadron calorimeter'. Together they form a unique fingerprint.

Cite this