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Hadronic Energy Resolution of a Combined High Granularity Scintillator Calorimeter System
This paper presents results obtained with the combined CALICE Scintillator Electromagnetic Calorimeter, Analogue Hadronic Calorimeter and Tail Catcher & Muon Tracker, three high granularity scintillator-silicon photomultiplier calorimeter prototypes. The response of the system to pions with mome...
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Lenguaje: | eng |
Publicado: |
2018
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1088/1748-0221/13/12/P12022 http://cds.cern.ch/record/2639257 |
_version_ | 1780960051496747008 |
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author | Repond, J. Xia, L. Apostolakis, J. Folger, G. Ivantchenko, V. Ribon, A. Uzhinskiy, V. Boumediene, D. Francais, V. Blazey, G.C. Dyshkant, A. Francis, K. Zutshi, V. Bach, O. Brianne, E. Ebrahimi, A. Gadow, K. Göttlicher, P. Hartbrich, O. Krivan, F. Krüger, K. Kvasnicka, J. Lu, S. Neubüser, C. Provenza, A. Reinecke, M. Sefkow, F. Schuwalow, S. Sudo, Y. Tran, H.L. Buhmann, P. Garutti, E. Laurien, S. Lomidze, D. Matysek, M. Kaplan, A. Schultz-Coulon, H.-Ch. Wilson, G.W. Jeans, D. Kawagoe, K. Sekiya, I. Suehara, T. Yamashiro, H. Yoshioka, T. Wing, M. Kotera, K. Nishiyama, M. Sakuma, T. Takeshita, T. Tozuka, S. Tubokawa, T. Uozumi, S. Calvo Alamillo, E. Fouz, M.C. Marin, J. Navarrete, J. Puerta Pelayo, J. Verdugo, A. Chadeeva, M. Danilov, M. Drutskoy, A. Popova, E. Rusinov, V. Tarkovsky, E. Emberger, L. Gabriel, M. Graf, C. Israeli, Y. van der Kolk, N. Simon, F. Szalay, M. Windel, H. Bilokin, S. Bonis, J. Pöschl, R. Irles, A. Thiebault, A. Richard, F. Zerwas, D. Anduze, M. Balagura, V. Becheva, E. Boudry, V. Brient, J-C. Cornat, R. Edy, E. Frotin, M. Gastaldi, F. Li, B. Magniette, F. Nanni, J. Rubio-Roy, M. Shpak, K. Tran, T.H. Videau, H. Yu, D. Cvach, J. Janata, M. Kovalcuk, M. Polak, I. Smolik, J. Vrba, V. Zalesak, J. Zuklin, J. Chang, S. Khan, A. Kim, D.H. Kong, D.J. Oh, Y.D. Elkhalii, A. Götze, M. Zeitnitz, C. |
author_facet | Repond, J. Xia, L. Apostolakis, J. Folger, G. Ivantchenko, V. Ribon, A. Uzhinskiy, V. Boumediene, D. Francais, V. Blazey, G.C. Dyshkant, A. Francis, K. Zutshi, V. Bach, O. Brianne, E. Ebrahimi, A. Gadow, K. Göttlicher, P. Hartbrich, O. Krivan, F. Krüger, K. Kvasnicka, J. Lu, S. Neubüser, C. Provenza, A. Reinecke, M. Sefkow, F. Schuwalow, S. Sudo, Y. Tran, H.L. Buhmann, P. Garutti, E. Laurien, S. Lomidze, D. Matysek, M. Kaplan, A. Schultz-Coulon, H.-Ch. Wilson, G.W. Jeans, D. Kawagoe, K. Sekiya, I. Suehara, T. Yamashiro, H. Yoshioka, T. Wing, M. Kotera, K. Nishiyama, M. Sakuma, T. Takeshita, T. Tozuka, S. Tubokawa, T. Uozumi, S. Calvo Alamillo, E. Fouz, M.C. Marin, J. Navarrete, J. Puerta Pelayo, J. Verdugo, A. Chadeeva, M. Danilov, M. Drutskoy, A. Popova, E. Rusinov, V. Tarkovsky, E. Emberger, L. Gabriel, M. Graf, C. Israeli, Y. van der Kolk, N. Simon, F. Szalay, M. Windel, H. Bilokin, S. Bonis, J. Pöschl, R. Irles, A. Thiebault, A. Richard, F. Zerwas, D. Anduze, M. Balagura, V. Becheva, E. Boudry, V. Brient, J-C. Cornat, R. Edy, E. Frotin, M. Gastaldi, F. Li, B. Magniette, F. Nanni, J. Rubio-Roy, M. Shpak, K. Tran, T.H. Videau, H. Yu, D. Cvach, J. Janata, M. Kovalcuk, M. Polak, I. Smolik, J. Vrba, V. Zalesak, J. Zuklin, J. Chang, S. Khan, A. Kim, D.H. Kong, D.J. Oh, Y.D. Elkhalii, A. Götze, M. Zeitnitz, C. |
author_sort | Repond, J. |
collection | CERN |
description | This paper presents results obtained with the combined CALICE Scintillator Electromagnetic Calorimeter, Analogue Hadronic Calorimeter and Tail Catcher & Muon Tracker, three high granularity scintillator-silicon photomultiplier calorimeter prototypes. The response of the system to pions with momenta between 4 GeV/c and 32 GeV/c is analysed, including the average energy response, resolution, and longitudinal shower profiles. Two techniques are applied to reconstruct the initial particle energy from the measured energy depositions; a standard energy reconstruction which is linear in the measured depositions and a software compensation technique based on reweighting individually measured depositions according to their hit energy. The results are compared to predictions of the GEANT 4 physics lists QGSP_BERT_HP and FTFP_BERT_HP. |
id | cern-2639257 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2018 |
record_format | invenio |
spelling | cern-26392572023-08-09T03:56:52Zdoi:10.1088/1748-0221/13/12/P12022http://cds.cern.ch/record/2639257engRepond, J.Xia, L.Apostolakis, J.Folger, G.Ivantchenko, V.Ribon, A.Uzhinskiy, V.Boumediene, D.Francais, V.Blazey, G.C.Dyshkant, A.Francis, K.Zutshi, V.Bach, O.Brianne, E.Ebrahimi, A.Gadow, K.Göttlicher, P.Hartbrich, O.Krivan, F.Krüger, K.Kvasnicka, J.Lu, S.Neubüser, C.Provenza, A.Reinecke, M.Sefkow, F.Schuwalow, S.Sudo, Y.Tran, H.L.Buhmann, P.Garutti, E.Laurien, S.Lomidze, D.Matysek, M.Kaplan, A.Schultz-Coulon, H.-Ch.Wilson, G.W.Jeans, D.Kawagoe, K.Sekiya, I.Suehara, T.Yamashiro, H.Yoshioka, T.Wing, M.Kotera, K.Nishiyama, M.Sakuma, T.Takeshita, T.Tozuka, S.Tubokawa, T.Uozumi, S.Calvo Alamillo, E.Fouz, M.C.Marin, J.Navarrete, J.Puerta Pelayo, J.Verdugo, A.Chadeeva, M.Danilov, M.Drutskoy, A.Popova, E.Rusinov, V.Tarkovsky, E.Emberger, L.Gabriel, M.Graf, C.Israeli, Y.van der Kolk, N.Simon, F.Szalay, M.Windel, H.Bilokin, S.Bonis, J.Pöschl, R.Irles, A.Thiebault, A.Richard, F.Zerwas, D.Anduze, M.Balagura, V.Becheva, E.Boudry, V.Brient, J-C.Cornat, R.Edy, E.Frotin, M.Gastaldi, F.Li, B.Magniette, F.Nanni, J.Rubio-Roy, M.Shpak, K.Tran, T.H.Videau, H.Yu, D.Cvach, J.Janata, M.Kovalcuk, M.Polak, I.Smolik, J.Vrba, V.Zalesak, J.Zuklin, J.Chang, S.Khan, A.Kim, D.H.Kong, D.J.Oh, Y.D.Elkhalii, A.Götze, M.Zeitnitz, C.Hadronic Energy Resolution of a Combined High Granularity Scintillator Calorimeter Systemphysics.ins-detDetectors and Experimental TechniquesThis paper presents results obtained with the combined CALICE Scintillator Electromagnetic Calorimeter, Analogue Hadronic Calorimeter and Tail Catcher & Muon Tracker, three high granularity scintillator-silicon photomultiplier calorimeter prototypes. The response of the system to pions with momenta between 4 GeV/c and 32 GeV/c is analysed, including the average energy response, resolution, and longitudinal shower profiles. Two techniques are applied to reconstruct the initial particle energy from the measured energy depositions; a standard energy reconstruction which is linear in the measured depositions and a software compensation technique based on reweighting individually measured depositions according to their hit energy. The results are compared to predictions of the GEANT 4 physics lists QGSP_BERT_HP and FTFP_BERT_HP.This paper presents results obtained with the combined CALICE Scintillator Electromagnetic Calorimeter, Analogue Hadronic Calorimeter and Tail Catcher & Muon Tracker, three high granularity scintillator-SiPM calorimeter prototypes. The response of the system to pions with momenta between 4 GeV/c and 32 GeV/c is analysed, including the energy response, resolution, and longitudinal shower profiles. The results of a software compensation technique based on weighting according to hit energy are compared to those of a standard linear energy reconstruction. The results are compared to predictions of the GEANT4 physics lists QGSP_BERT_HP and FTFP_BERT_HP.arXiv:1809.03909CALICE-PUB-2018-001oai:cds.cern.ch:26392572018-09-11 |
spellingShingle | physics.ins-det Detectors and Experimental Techniques Repond, J. Xia, L. Apostolakis, J. Folger, G. Ivantchenko, V. Ribon, A. Uzhinskiy, V. Boumediene, D. Francais, V. Blazey, G.C. Dyshkant, A. Francis, K. Zutshi, V. Bach, O. Brianne, E. Ebrahimi, A. Gadow, K. Göttlicher, P. Hartbrich, O. Krivan, F. Krüger, K. Kvasnicka, J. Lu, S. Neubüser, C. Provenza, A. Reinecke, M. Sefkow, F. Schuwalow, S. Sudo, Y. Tran, H.L. Buhmann, P. Garutti, E. Laurien, S. Lomidze, D. Matysek, M. Kaplan, A. Schultz-Coulon, H.-Ch. Wilson, G.W. Jeans, D. Kawagoe, K. Sekiya, I. Suehara, T. Yamashiro, H. Yoshioka, T. Wing, M. Kotera, K. Nishiyama, M. Sakuma, T. Takeshita, T. Tozuka, S. Tubokawa, T. Uozumi, S. Calvo Alamillo, E. Fouz, M.C. Marin, J. Navarrete, J. Puerta Pelayo, J. Verdugo, A. Chadeeva, M. Danilov, M. Drutskoy, A. Popova, E. Rusinov, V. Tarkovsky, E. Emberger, L. Gabriel, M. Graf, C. Israeli, Y. van der Kolk, N. Simon, F. Szalay, M. Windel, H. Bilokin, S. Bonis, J. Pöschl, R. Irles, A. Thiebault, A. Richard, F. Zerwas, D. Anduze, M. Balagura, V. Becheva, E. Boudry, V. Brient, J-C. Cornat, R. Edy, E. Frotin, M. Gastaldi, F. Li, B. Magniette, F. Nanni, J. Rubio-Roy, M. Shpak, K. Tran, T.H. Videau, H. Yu, D. Cvach, J. Janata, M. Kovalcuk, M. Polak, I. Smolik, J. Vrba, V. Zalesak, J. Zuklin, J. Chang, S. Khan, A. Kim, D.H. Kong, D.J. Oh, Y.D. Elkhalii, A. Götze, M. Zeitnitz, C. Hadronic Energy Resolution of a Combined High Granularity Scintillator Calorimeter System |
title | Hadronic Energy Resolution of a Combined High Granularity Scintillator Calorimeter System |
title_full | Hadronic Energy Resolution of a Combined High Granularity Scintillator Calorimeter System |
title_fullStr | Hadronic Energy Resolution of a Combined High Granularity Scintillator Calorimeter System |
title_full_unstemmed | Hadronic Energy Resolution of a Combined High Granularity Scintillator Calorimeter System |
title_short | Hadronic Energy Resolution of a Combined High Granularity Scintillator Calorimeter System |
title_sort | hadronic energy resolution of a combined high granularity scintillator calorimeter system |
topic | physics.ins-det Detectors and Experimental Techniques |
url | https://dx.doi.org/10.1088/1748-0221/13/12/P12022 http://cds.cern.ch/record/2639257 |
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