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Response of the CALICE Si-W Electromagnetic Calorimeter Physics Prototype to Electrons
A prototype Silicon-Tungsten electromagnetic calorimeter (ECAL) for an International Linear Collider (ILC) detector was installed and tested during summer and autumn 2006 at CERN. The detector had 6480 silicon pads of dimension 1x1 cm^2. Data were collected with electron beams in the energy range 6...
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Lenguaje: | eng |
Publicado: |
2008
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1016/j.nima.2009.07.026 http://cds.cern.ch/record/1140052 |
_version_ | 1780915529267019776 |
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author | Adloff, C. Karyotakis, Y. Repond, J. Yu, J. Eigen, G. Hawkes, C.M. Mikami, Y. Miller, O. Watson, N.K. Wilson, J.A. Goto, T. Mavromanolakis, G. Thomson, M.A. Ward, D.R. Yan, W. Benchekroun, D. Hoummada, A. Krim, M. Benyamna, M. Boumediene, D. Brun, N. Carloganu, C. Gay, P. Morisseau, F. Blazey, G.C. Chakraborty, D. Dyshkant, A. Francis, K. Hedin, D. Lima, G. Zutshi, V. Hostachy, J.-Y. Morin, L. D'Ascenzo, N. Cornett, U. David, D. Fabbri, R. Falley, G. Gadow, K. Garutti, E. Gottlicher, P. Jung, T. Karstensen, S. Korbel, V. Lucaci-Timoce, A.-I. Lutz, B. Meyer, N. Morgunov, V. Reinecke, M. Sefkow, F. Smirnov, P. Vargas-Trevino, A. Wattimena, N. Wendt, O. Feege, N. Groll, M. Haller, J. Heuer, R.-D. Richter, S. Samson, J. Kaplan, A. Schultz-Coulon, H.-Ch. Shen, W. Tadday, A. Bilki, B. Norbeck, E. Onel, Y. Kim, E.J. Baek, N.I. Kim, D-W. Lee, K. Lee, S.C. Kawagoe, K. Tamura, Y. Bowerman, D.A. Dauncey, P.D. Magnan, A.-M. Yilmaz, H. Zorba, O. Bartsch, V. Postranecky, M. Warren, M. Wing, M. Faucci Giannelli, M. Green, M.G. Salvatore, F. Bedjidian, M. Kieffer, R. Laktineh, I. Bailey, D.S. Barlow, R.J. Kelly, M. Thompson, R.J. Danilov, M. Tarkovsky, E. Baranova, N. Karmanov, D. Korolev, M. Merkin, M. Voronin, A. Frey, A. Lu, S. Prothmann, K. Simon, F. Bouquet, B. Callier, S. Cornebise, P. Fleury, J. Li, H. Richard, F. de la Taille, Ch. Poeschl, R. Raux, L. Ruan, M. Seguin-Moreau, N. Wicek, F. Anduze, M. Boudry, V. Brient, J-C. Gaycken, G. Mora de Freitas, P. Musat, G. Reinhard, M. Rouge, A. Vanel, J-Ch. Videau, H. Park, K-H. Zacek, J. Cvach, J. Gallus, P. Havranek, M. Janata, M. Marcisovsky, M. Polak, I. Popule, J. Tomasek, L. Tomasek, M. Ruzicka, P. Sicho, P. Smolik, J. Vrba, V. Zalesak, J. Belhorma, B. Belmir, M. Nam, S.W. Park, I.H. Yang, J. Chai, J.-S. Kim, J.-T. Kim, G.-B. Kang, J. Kwon, Y.-J. |
author_facet | Adloff, C. Karyotakis, Y. Repond, J. Yu, J. Eigen, G. Hawkes, C.M. Mikami, Y. Miller, O. Watson, N.K. Wilson, J.A. Goto, T. Mavromanolakis, G. Thomson, M.A. Ward, D.R. Yan, W. Benchekroun, D. Hoummada, A. Krim, M. Benyamna, M. Boumediene, D. Brun, N. Carloganu, C. Gay, P. Morisseau, F. Blazey, G.C. Chakraborty, D. Dyshkant, A. Francis, K. Hedin, D. Lima, G. Zutshi, V. Hostachy, J.-Y. Morin, L. D'Ascenzo, N. Cornett, U. David, D. Fabbri, R. Falley, G. Gadow, K. Garutti, E. Gottlicher, P. Jung, T. Karstensen, S. Korbel, V. Lucaci-Timoce, A.-I. Lutz, B. Meyer, N. Morgunov, V. Reinecke, M. Sefkow, F. Smirnov, P. Vargas-Trevino, A. Wattimena, N. Wendt, O. Feege, N. Groll, M. Haller, J. Heuer, R.-D. Richter, S. Samson, J. Kaplan, A. Schultz-Coulon, H.-Ch. Shen, W. Tadday, A. Bilki, B. Norbeck, E. Onel, Y. Kim, E.J. Baek, N.I. Kim, D-W. Lee, K. Lee, S.C. Kawagoe, K. Tamura, Y. Bowerman, D.A. Dauncey, P.D. Magnan, A.-M. Yilmaz, H. Zorba, O. Bartsch, V. Postranecky, M. Warren, M. Wing, M. Faucci Giannelli, M. Green, M.G. Salvatore, F. Bedjidian, M. Kieffer, R. Laktineh, I. Bailey, D.S. Barlow, R.J. Kelly, M. Thompson, R.J. Danilov, M. Tarkovsky, E. Baranova, N. Karmanov, D. Korolev, M. Merkin, M. Voronin, A. Frey, A. Lu, S. Prothmann, K. Simon, F. Bouquet, B. Callier, S. Cornebise, P. Fleury, J. Li, H. Richard, F. de la Taille, Ch. Poeschl, R. Raux, L. Ruan, M. Seguin-Moreau, N. Wicek, F. Anduze, M. Boudry, V. Brient, J-C. Gaycken, G. Mora de Freitas, P. Musat, G. Reinhard, M. Rouge, A. Vanel, J-Ch. Videau, H. Park, K-H. Zacek, J. Cvach, J. Gallus, P. Havranek, M. Janata, M. Marcisovsky, M. Polak, I. Popule, J. Tomasek, L. Tomasek, M. Ruzicka, P. Sicho, P. Smolik, J. Vrba, V. Zalesak, J. Belhorma, B. Belmir, M. Nam, S.W. Park, I.H. Yang, J. Chai, J.-S. Kim, J.-T. Kim, G.-B. Kang, J. Kwon, Y.-J. |
author_sort | Adloff, C. |
collection | CERN |
description | A prototype Silicon-Tungsten electromagnetic calorimeter (ECAL) for an International Linear Collider (ILC) detector was installed and tested during summer and autumn 2006 at CERN. The detector had 6480 silicon pads of dimension 1x1 cm^2. Data were collected with electron beams in the energy range 6 to 45 GeV. The analysis described in this paper focuses on electromagnetic shower reconstruction and characterises the ECAL response to electrons in terms of energy resolution and linearity. The detector is linear to within approximately the 1% level and has a relative energy resolution of (16.6 +- 0.1)/ \sqrt{E(GeV}) + 1.1 +- 0.1 (%). The spatial uniformity and the time stability of the ECAL are also addressed. |
id | cern-1140052 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2008 |
record_format | invenio |
spelling | cern-11400522022-01-25T03:34:02Zdoi:10.1016/j.nima.2009.07.026http://cds.cern.ch/record/1140052engAdloff, C.Karyotakis, Y.Repond, J.Yu, J.Eigen, G.Hawkes, C.M.Mikami, Y.Miller, O.Watson, N.K.Wilson, J.A.Goto, T.Mavromanolakis, G.Thomson, M.A.Ward, D.R.Yan, W.Benchekroun, D.Hoummada, A.Krim, M.Benyamna, M.Boumediene, D.Brun, N.Carloganu, C.Gay, P.Morisseau, F.Blazey, G.C.Chakraborty, D.Dyshkant, A.Francis, K.Hedin, D.Lima, G.Zutshi, V.Hostachy, J.-Y.Morin, L.D'Ascenzo, N.Cornett, U.David, D.Fabbri, R.Falley, G.Gadow, K.Garutti, E.Gottlicher, P.Jung, T.Karstensen, S.Korbel, V.Lucaci-Timoce, A.-I.Lutz, B.Meyer, N.Morgunov, V.Reinecke, M.Sefkow, F.Smirnov, P.Vargas-Trevino, A.Wattimena, N.Wendt, O.Feege, N.Groll, M.Haller, J.Heuer, R.-D.Richter, S.Samson, J.Kaplan, A.Schultz-Coulon, H.-Ch.Shen, W.Tadday, A.Bilki, B.Norbeck, E.Onel, Y.Kim, E.J.Baek, N.I.Kim, D-W.Lee, K.Lee, S.C.Kawagoe, K.Tamura, Y.Bowerman, D.A.Dauncey, P.D.Magnan, A.-M.Yilmaz, H.Zorba, O.Bartsch, V.Postranecky, M.Warren, M.Wing, M.Faucci Giannelli, M.Green, M.G.Salvatore, F.Bedjidian, M.Kieffer, R.Laktineh, I.Bailey, D.S.Barlow, R.J.Kelly, M.Thompson, R.J.Danilov, M.Tarkovsky, E.Baranova, N.Karmanov, D.Korolev, M.Merkin, M.Voronin, A.Frey, A.Lu, S.Prothmann, K.Simon, F.Bouquet, B.Callier, S.Cornebise, P.Fleury, J.Li, H.Richard, F.de la Taille, Ch.Poeschl, R.Raux, L.Ruan, M.Seguin-Moreau, N.Wicek, F.Anduze, M.Boudry, V.Brient, J-C.Gaycken, G.Mora de Freitas, P.Musat, G.Reinhard, M.Rouge, A.Vanel, J-Ch.Videau, H.Park, K-H.Zacek, J.Cvach, J.Gallus, P.Havranek, M.Janata, M.Marcisovsky, M.Polak, I.Popule, J.Tomasek, L.Tomasek, M.Ruzicka, P.Sicho, P.Smolik, J.Vrba, V.Zalesak, J.Belhorma, B.Belmir, M.Nam, S.W.Park, I.H.Yang, J.Chai, J.-S.Kim, J.-T.Kim, G.-B.Kang, J.Kwon, Y.-J.Response of the CALICE Si-W Electromagnetic Calorimeter Physics Prototype to Electronsphysics.ins-detA prototype Silicon-Tungsten electromagnetic calorimeter (ECAL) for an International Linear Collider (ILC) detector was installed and tested during summer and autumn 2006 at CERN. The detector had 6480 silicon pads of dimension 1x1 cm^2. Data were collected with electron beams in the energy range 6 to 45 GeV. The analysis described in this paper focuses on electromagnetic shower reconstruction and characterises the ECAL response to electrons in terms of energy resolution and linearity. The detector is linear to within approximately the 1% level and has a relative energy resolution of (16.6 +- 0.1)/ \sqrt{E(GeV}) + 1.1 +- 0.1 (%). The spatial uniformity and the time stability of the ECAL are also addressed.A prototype silicon-tungsten electromagnetic calorimeter (ECAL) for an international linear collider (ILC) detector was installed and tested during summer and autumn 2006 at CERN. The detector had 6480 silicon pads of dimension 1x1cm^2. Data were collected with electron beams in the energy range 6-45GeV. The analysis described in this paper focuses on electromagnetic shower reconstruction and characterises the ECAL response to electrons in terms of energy resolution and linearity. The detector is linear to within approximately the 1% level and has a relative energy resolution of (16.53+/-0.14(stat)+/-0.4(syst))/E(GeV)@?(1.07+/-0.07(stat)+/-0.1(syst))(%). The spatial uniformity and the time stability of the ECAL are also addressed.A prototype Silicon-Tungsten electromagnetic calorimeter (ECAL) for an International Linear Collider (ILC) detector was installed and tested during summer and autumn 2006 at CERN. The detector had 6480 silicon pads of dimension 1x1 cm^2. Data were collected with electron beams in the energy range 6 to 45 GeV. The analysis described in this paper focuses on electromagnetic shower reconstruction and characterises the ECAL response to electrons in terms of energy resolution and linearity. The detector is linear to within approximately the 1% level and has a relative energy resolution of (16.6 +- 0.1)/ \sqrt{E(GeV}) + 1.1 +- 0.1 (%). The spatial uniformity and the time stability of the ECAL are also addressed.arXiv:0811.2354CALICE Analysis Note CAN-008CALICE-CAN-2008-002CALICE-PUB-2008-002oai:cds.cern.ch:11400522008-11-17 |
spellingShingle | physics.ins-det Adloff, C. Karyotakis, Y. Repond, J. Yu, J. Eigen, G. Hawkes, C.M. Mikami, Y. Miller, O. Watson, N.K. Wilson, J.A. Goto, T. Mavromanolakis, G. Thomson, M.A. Ward, D.R. Yan, W. Benchekroun, D. Hoummada, A. Krim, M. Benyamna, M. Boumediene, D. Brun, N. Carloganu, C. Gay, P. Morisseau, F. Blazey, G.C. Chakraborty, D. Dyshkant, A. Francis, K. Hedin, D. Lima, G. Zutshi, V. Hostachy, J.-Y. Morin, L. D'Ascenzo, N. Cornett, U. David, D. Fabbri, R. Falley, G. Gadow, K. Garutti, E. Gottlicher, P. Jung, T. Karstensen, S. Korbel, V. Lucaci-Timoce, A.-I. Lutz, B. Meyer, N. Morgunov, V. Reinecke, M. Sefkow, F. Smirnov, P. Vargas-Trevino, A. Wattimena, N. Wendt, O. Feege, N. Groll, M. Haller, J. Heuer, R.-D. Richter, S. Samson, J. Kaplan, A. Schultz-Coulon, H.-Ch. Shen, W. Tadday, A. Bilki, B. Norbeck, E. Onel, Y. Kim, E.J. Baek, N.I. Kim, D-W. Lee, K. Lee, S.C. Kawagoe, K. Tamura, Y. Bowerman, D.A. Dauncey, P.D. Magnan, A.-M. Yilmaz, H. Zorba, O. Bartsch, V. Postranecky, M. Warren, M. Wing, M. Faucci Giannelli, M. Green, M.G. Salvatore, F. Bedjidian, M. Kieffer, R. Laktineh, I. Bailey, D.S. Barlow, R.J. Kelly, M. Thompson, R.J. Danilov, M. Tarkovsky, E. Baranova, N. Karmanov, D. Korolev, M. Merkin, M. Voronin, A. Frey, A. Lu, S. Prothmann, K. Simon, F. Bouquet, B. Callier, S. Cornebise, P. Fleury, J. Li, H. Richard, F. de la Taille, Ch. Poeschl, R. Raux, L. Ruan, M. Seguin-Moreau, N. Wicek, F. Anduze, M. Boudry, V. Brient, J-C. Gaycken, G. Mora de Freitas, P. Musat, G. Reinhard, M. Rouge, A. Vanel, J-Ch. Videau, H. Park, K-H. Zacek, J. Cvach, J. Gallus, P. Havranek, M. Janata, M. Marcisovsky, M. Polak, I. Popule, J. Tomasek, L. Tomasek, M. Ruzicka, P. Sicho, P. Smolik, J. Vrba, V. Zalesak, J. Belhorma, B. Belmir, M. Nam, S.W. Park, I.H. Yang, J. Chai, J.-S. Kim, J.-T. Kim, G.-B. Kang, J. Kwon, Y.-J. Response of the CALICE Si-W Electromagnetic Calorimeter Physics Prototype to Electrons |
title | Response of the CALICE Si-W Electromagnetic Calorimeter Physics Prototype to Electrons |
title_full | Response of the CALICE Si-W Electromagnetic Calorimeter Physics Prototype to Electrons |
title_fullStr | Response of the CALICE Si-W Electromagnetic Calorimeter Physics Prototype to Electrons |
title_full_unstemmed | Response of the CALICE Si-W Electromagnetic Calorimeter Physics Prototype to Electrons |
title_short | Response of the CALICE Si-W Electromagnetic Calorimeter Physics Prototype to Electrons |
title_sort | response of the calice si-w electromagnetic calorimeter physics prototype to electrons |
topic | physics.ins-det |
url | https://dx.doi.org/10.1016/j.nima.2009.07.026 http://cds.cern.ch/record/1140052 |
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responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT polaki responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT populej responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT tomasekl responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT tomasekm responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT ruzickap responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT sichop responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT smolikj responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT vrbav responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT zalesakj responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT belhormab responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT belmirm responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT namsw responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT parkih responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT yangj responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT chaijs responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT kimjt responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT kimgb responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT kangj responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons AT kwonyj responseofthecalicesiwelectromagneticcalorimeterphysicsprototypetoelectrons |