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Performance of prototype GE1 ∕ 1 chambers for the CMS muon spectrometer upgrade
The high-luminosity phase of the Large Hadron Collider (HL-LHC) will result in ten times higher particle background than measured during the first phase of LHC operation. In order to fully exploit the highly-demanding operating conditions during HL-LHC, the Compact Muon Solenoid (CMS) Collaboration...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2019
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1016/j.nima.2020.164104 http://cds.cern.ch/record/2665948 |
_version_ | 1780961967283896320 |
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author | Abbas, M. Abbrescia, M. Abdalla, H. Abu Zeid, S. Agapitos, A. Ahmad, A. Ahmed, A. Ahmed, A. Ahmed, W. Amarjeet, S. Asghar, I. Aspell, P. Avila, C. Babbar, J. Ban, Y. Band, R. Bansal, S. Benussi, L. Bhatnagar, V. Bianco, M. Bianco, S. Black, K. Borgonovi, L. Bouhali, O. Braghieri, A. Braibant, S. Butalla, S. Calzaferri, S. Caponero, M. Cassese, F. Cavallo, N. Chauhan, S. Colafranceschi, S. Colaleo, A. Conde Garcia, A. Dalchenko, M. De Iorio, A. De Lentdecker, G. Dell Olio, D. De Robertis, G. Dharmaratna, W. Dildick, S. Dorney, B. Erbacher, R. Fabozzi, F. Fallavollita, F. Fiorina, D. Fontanesi, E. Franco, M. Galloni, C. Giacomelli, P. Gilmore, J. Gola, M. Gruchala, M. Gutierrez, A. Hadjiiska, R. Hakkarainen, T. Hauser, J. Hoepfner, K. Hohlmann, M. Hoorani, H. Huang, T. Iaydjiev, P. Irshad, A. Iorio, A. Jaramillo, J. Jeong, D. Jha, V. Juodagalvis, A. Juska, E. Kamon, T. Karchin, P. Kaur, A. Kaur, H. Keller, H. Kim, H. Kim, J. Kumar, A. Kumar, S. Kumawat, H. Lacalamita, N. Lee, J. Levin, A. Li, Q. Licciulli, F. Lista, L. Loddo, F. Lohan, M. Luhach, M. Maggi, M. Majumdar, N. Malagalage, K. Malhorta, S. Martiradonna, S. Mccoll, N. McLean, C. Merlin, J. Mishra, D. Mocellin, G. Moureaux, L. Muhammad, A. Muhammad, S. Mukhopadhyay, S. Naimuddin, M. Netrakanti, P. Nuzzo, S. Oliveira, R. Pant, L. Paolucci, P. Park, I. Passamonti, L. Passeggio, G. Peck, A. Petre, L. Petrow, H. Piccolo, D. Pierluigi, D. Raffone, G. Rahmani, M. Ramirez, F. Ranieri, A. Rashevski, G. Ressegotti, M. Riccardi, C. Rodozov, M. Roskas, C. Rossi, B. Rout, P. Ruiz, J.D. Russo, A. Safonov, A. Saltzberg, D. Saviano, G. Shah, A. Sharma, A. Sharma, R. Shopova, M. Simone, F. Singh, J. Soldani, E. Sonnadara, U. Starling, E. Stone, B. Sturdy, J. Sultanov, G. Szillasi, Z. Teague, D. Teyssier, D. Tuuva, T. Tytgat, M. Vai, I. Vanegas, N. Venditti, R. Verwilligen, P. Vetens, W. Virdi, A. Vitulo, P. Wajid, A. Wang, D. Wang, K. Wickramage, N. Yang, Y. Yang, U. Yongho, J. Yoon, I. You, Z. Yu, I. Zaleski, S. |
author_facet | Abbas, M. Abbrescia, M. Abdalla, H. Abu Zeid, S. Agapitos, A. Ahmad, A. Ahmed, A. Ahmed, A. Ahmed, W. Amarjeet, S. Asghar, I. Aspell, P. Avila, C. Babbar, J. Ban, Y. Band, R. Bansal, S. Benussi, L. Bhatnagar, V. Bianco, M. Bianco, S. Black, K. Borgonovi, L. Bouhali, O. Braghieri, A. Braibant, S. Butalla, S. Calzaferri, S. Caponero, M. Cassese, F. Cavallo, N. Chauhan, S. Colafranceschi, S. Colaleo, A. Conde Garcia, A. Dalchenko, M. De Iorio, A. De Lentdecker, G. Dell Olio, D. De Robertis, G. Dharmaratna, W. Dildick, S. Dorney, B. Erbacher, R. Fabozzi, F. Fallavollita, F. Fiorina, D. Fontanesi, E. Franco, M. Galloni, C. Giacomelli, P. Gilmore, J. Gola, M. Gruchala, M. Gutierrez, A. Hadjiiska, R. Hakkarainen, T. Hauser, J. Hoepfner, K. Hohlmann, M. Hoorani, H. Huang, T. Iaydjiev, P. Irshad, A. Iorio, A. Jaramillo, J. Jeong, D. Jha, V. Juodagalvis, A. Juska, E. Kamon, T. Karchin, P. Kaur, A. Kaur, H. Keller, H. Kim, H. Kim, J. Kumar, A. Kumar, S. Kumawat, H. Lacalamita, N. Lee, J. Levin, A. Li, Q. Licciulli, F. Lista, L. Loddo, F. Lohan, M. Luhach, M. Maggi, M. Majumdar, N. Malagalage, K. Malhorta, S. Martiradonna, S. Mccoll, N. McLean, C. Merlin, J. Mishra, D. Mocellin, G. Moureaux, L. Muhammad, A. Muhammad, S. Mukhopadhyay, S. Naimuddin, M. Netrakanti, P. Nuzzo, S. Oliveira, R. Pant, L. Paolucci, P. Park, I. Passamonti, L. Passeggio, G. Peck, A. Petre, L. Petrow, H. Piccolo, D. Pierluigi, D. Raffone, G. Rahmani, M. Ramirez, F. Ranieri, A. Rashevski, G. Ressegotti, M. Riccardi, C. Rodozov, M. Roskas, C. Rossi, B. Rout, P. Ruiz, J.D. Russo, A. Safonov, A. Saltzberg, D. Saviano, G. Shah, A. Sharma, A. Sharma, R. Shopova, M. Simone, F. Singh, J. Soldani, E. Sonnadara, U. Starling, E. Stone, B. Sturdy, J. Sultanov, G. Szillasi, Z. Teague, D. Teyssier, D. Tuuva, T. Tytgat, M. Vai, I. Vanegas, N. Venditti, R. Verwilligen, P. Vetens, W. Virdi, A. Vitulo, P. Wajid, A. Wang, D. Wang, K. Wickramage, N. Yang, Y. Yang, U. Yongho, J. Yoon, I. You, Z. Yu, I. Zaleski, S. |
author_sort | Abbas, M. |
collection | CERN |
description | The high-luminosity phase of the Large Hadron Collider (HL-LHC) will result in ten times higher particle background than measured during the first phase of LHC operation. In order to fully exploit the highly-demanding operating conditions during HL-LHC, the Compact Muon Solenoid (CMS) Collaboration will use Gas Electron Multiplier (GEM) detector technology. The technology will be integrated into the innermost region of the forward muon spectrometer of CMS as an additional muon station called GE1 ∕ 1. The primary purpose of this auxiliary station is to help in muon reconstruction and to control level-1 muon trigger rates in the pseudo-rapidity region 1.6≤|η|≤2.2 . The new station will contain trapezoidal-shaped GEM detectors called GE1 ∕ 1 chambers. The design of these chambers is finalized, and the installation is in progress during the Long Shutdown phase two (LS-2) that started in 2019. Several full-size prototypes were built and operated successfully in various test beams at CERN. We describe performance measurements such as gain, efficiency, and time resolution of these prototype chambers, developed after years of R&D;, and summarize their behavior in different gas compositions as a function of the applied voltage. |
id | cern-2665948 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2019 |
record_format | invenio |
spelling | cern-26659482023-06-07T02:43:22Zdoi:10.1016/j.nima.2020.164104http://cds.cern.ch/record/2665948engAbbas, M.Abbrescia, M.Abdalla, H.Abu Zeid, S.Agapitos, A.Ahmad, A.Ahmed, A.Ahmed, A.Ahmed, W.Amarjeet, S.Asghar, I.Aspell, P.Avila, C.Babbar, J.Ban, Y.Band, R.Bansal, S.Benussi, L.Bhatnagar, V.Bianco, M.Bianco, S.Black, K.Borgonovi, L.Bouhali, O.Braghieri, A.Braibant, S.Butalla, S.Calzaferri, S.Caponero, M.Cassese, F.Cavallo, N.Chauhan, S.Colafranceschi, S.Colaleo, A.Conde Garcia, A.Dalchenko, M.De Iorio, A.De Lentdecker, G.Dell Olio, D.De Robertis, G.Dharmaratna, W.Dildick, S.Dorney, B.Erbacher, R.Fabozzi, F.Fallavollita, F.Fiorina, D.Fontanesi, E.Franco, M.Galloni, C.Giacomelli, P.Gilmore, J.Gola, M.Gruchala, M.Gutierrez, A.Hadjiiska, R.Hakkarainen, T.Hauser, J.Hoepfner, K.Hohlmann, M.Hoorani, H.Huang, T.Iaydjiev, P.Irshad, A.Iorio, A.Jaramillo, J.Jeong, D.Jha, V.Juodagalvis, A.Juska, E.Kamon, T.Karchin, P.Kaur, A.Kaur, H.Keller, H.Kim, H.Kim, J.Kumar, A.Kumar, S.Kumawat, H.Lacalamita, N.Lee, J.Levin, A.Li, Q.Licciulli, F.Lista, L.Loddo, F.Lohan, M.Luhach, M.Maggi, M.Majumdar, N.Malagalage, K.Malhorta, S.Martiradonna, S.Mccoll, N.McLean, C.Merlin, J.Mishra, D.Mocellin, G.Moureaux, L.Muhammad, A.Muhammad, S.Mukhopadhyay, S.Naimuddin, M.Netrakanti, P.Nuzzo, S.Oliveira, R.Pant, L.Paolucci, P.Park, I.Passamonti, L.Passeggio, G.Peck, A.Petre, L.Petrow, H.Piccolo, D.Pierluigi, D.Raffone, G.Rahmani, M.Ramirez, F.Ranieri, A.Rashevski, G.Ressegotti, M.Riccardi, C.Rodozov, M.Roskas, C.Rossi, B.Rout, P.Ruiz, J.D.Russo, A.Safonov, A.Saltzberg, D.Saviano, G.Shah, A.Sharma, A.Sharma, R.Shopova, M.Simone, F.Singh, J.Soldani, E.Sonnadara, U.Starling, E.Stone, B.Sturdy, J.Sultanov, G.Szillasi, Z.Teague, D.Teyssier, D.Tuuva, T.Tytgat, M.Vai, I.Vanegas, N.Venditti, R.Verwilligen, P.Vetens, W.Virdi, A.Vitulo, P.Wajid, A.Wang, D.Wang, K.Wickramage, N.Yang, Y.Yang, U.Yongho, J.Yoon, I.You, Z.Yu, I.Zaleski, S.Performance of prototype GE1 ∕ 1 chambers for the CMS muon spectrometer upgradehep-exParticle Physics - Experimentphysics.ins-detDetectors and Experimental TechniquesThe high-luminosity phase of the Large Hadron Collider (HL-LHC) will result in ten times higher particle background than measured during the first phase of LHC operation. In order to fully exploit the highly-demanding operating conditions during HL-LHC, the Compact Muon Solenoid (CMS) Collaboration will use Gas Electron Multiplier (GEM) detector technology. The technology will be integrated into the innermost region of the forward muon spectrometer of CMS as an additional muon station called GE1 ∕ 1. The primary purpose of this auxiliary station is to help in muon reconstruction and to control level-1 muon trigger rates in the pseudo-rapidity region 1.6≤|η|≤2.2 . The new station will contain trapezoidal-shaped GEM detectors called GE1 ∕ 1 chambers. The design of these chambers is finalized, and the installation is in progress during the Long Shutdown phase two (LS-2) that started in 2019. Several full-size prototypes were built and operated successfully in various test beams at CERN. We describe performance measurements such as gain, efficiency, and time resolution of these prototype chambers, developed after years of R&D;, and summarize their behavior in different gas compositions as a function of the applied voltage.The high-luminosity phase of the Large Hadron Collider (HL-LHC) will result in ten times higher particle background than measured during the first phase of LHC operation. In order to fully exploit the highly-demanding operating conditions during HL-LHC, the Compact Muon Solenoid (CMS) Collaboration will use Gas Electron Multiplier (GEM) detector technology. The technology will be integrated into the innermost region of the forward muon spectrometer of CMS as an additional muon station called GE11. The primary purpose of this auxiliary station is to help in muon reconstruction and to control level-1 muon trigger rates in the pseudo-rapidity region $1.6 <|\eta|<2.2$. The new station will contain trapezoidal-shaped GEM detectors called GE11 chambers. The design of these chambers is finalized, and the installation is in progress during the Long Shutdown phase two (LS-2) that started in 2019. Several full-size prototypes were built and operated successfully in various test beams at CERN. We describe performance measurements such as gain, efficiency, and time resolution of these prototype chambers, developed after years of R&D, and summarize their behavior in different gas compositions as a function of the applied voltage.arXiv:1903.02186oai:cds.cern.ch:26659482019-03-06 |
spellingShingle | hep-ex Particle Physics - Experiment physics.ins-det Detectors and Experimental Techniques Abbas, M. Abbrescia, M. Abdalla, H. Abu Zeid, S. Agapitos, A. Ahmad, A. Ahmed, A. Ahmed, A. Ahmed, W. Amarjeet, S. Asghar, I. Aspell, P. Avila, C. Babbar, J. Ban, Y. Band, R. Bansal, S. Benussi, L. Bhatnagar, V. Bianco, M. Bianco, S. Black, K. Borgonovi, L. Bouhali, O. Braghieri, A. Braibant, S. Butalla, S. Calzaferri, S. Caponero, M. Cassese, F. Cavallo, N. Chauhan, S. Colafranceschi, S. Colaleo, A. Conde Garcia, A. Dalchenko, M. De Iorio, A. De Lentdecker, G. Dell Olio, D. De Robertis, G. Dharmaratna, W. Dildick, S. Dorney, B. Erbacher, R. Fabozzi, F. Fallavollita, F. Fiorina, D. Fontanesi, E. Franco, M. Galloni, C. Giacomelli, P. Gilmore, J. Gola, M. Gruchala, M. Gutierrez, A. Hadjiiska, R. Hakkarainen, T. Hauser, J. Hoepfner, K. Hohlmann, M. Hoorani, H. Huang, T. Iaydjiev, P. Irshad, A. Iorio, A. Jaramillo, J. Jeong, D. Jha, V. Juodagalvis, A. Juska, E. Kamon, T. Karchin, P. Kaur, A. Kaur, H. Keller, H. Kim, H. Kim, J. Kumar, A. Kumar, S. Kumawat, H. Lacalamita, N. Lee, J. Levin, A. Li, Q. Licciulli, F. Lista, L. Loddo, F. Lohan, M. Luhach, M. Maggi, M. Majumdar, N. Malagalage, K. Malhorta, S. Martiradonna, S. Mccoll, N. McLean, C. Merlin, J. Mishra, D. Mocellin, G. Moureaux, L. Muhammad, A. Muhammad, S. Mukhopadhyay, S. Naimuddin, M. Netrakanti, P. Nuzzo, S. Oliveira, R. Pant, L. Paolucci, P. Park, I. Passamonti, L. Passeggio, G. Peck, A. Petre, L. Petrow, H. Piccolo, D. Pierluigi, D. Raffone, G. Rahmani, M. Ramirez, F. Ranieri, A. Rashevski, G. Ressegotti, M. Riccardi, C. Rodozov, M. Roskas, C. Rossi, B. Rout, P. Ruiz, J.D. Russo, A. Safonov, A. Saltzberg, D. Saviano, G. Shah, A. Sharma, A. Sharma, R. Shopova, M. Simone, F. Singh, J. Soldani, E. Sonnadara, U. Starling, E. Stone, B. Sturdy, J. Sultanov, G. Szillasi, Z. Teague, D. Teyssier, D. Tuuva, T. Tytgat, M. Vai, I. Vanegas, N. Venditti, R. Verwilligen, P. Vetens, W. Virdi, A. Vitulo, P. Wajid, A. Wang, D. Wang, K. Wickramage, N. Yang, Y. Yang, U. Yongho, J. Yoon, I. You, Z. Yu, I. Zaleski, S. Performance of prototype GE1 ∕ 1 chambers for the CMS muon spectrometer upgrade |
title | Performance of prototype GE1 ∕ 1 chambers for the CMS muon spectrometer upgrade |
title_full | Performance of prototype GE1 ∕ 1 chambers for the CMS muon spectrometer upgrade |
title_fullStr | Performance of prototype GE1 ∕ 1 chambers for the CMS muon spectrometer upgrade |
title_full_unstemmed | Performance of prototype GE1 ∕ 1 chambers for the CMS muon spectrometer upgrade |
title_short | Performance of prototype GE1 ∕ 1 chambers for the CMS muon spectrometer upgrade |
title_sort | performance of prototype ge1 ∕ 1 chambers for the cms muon spectrometer upgrade |
topic | hep-ex Particle Physics - Experiment physics.ins-det Detectors and Experimental Techniques |
url | https://dx.doi.org/10.1016/j.nima.2020.164104 http://cds.cern.ch/record/2665948 |
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performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT sharmaa performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT sharmar performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT shopovam performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT simonef performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT singhj performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT soldanie performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT sonnadarau performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT starlinge performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT stoneb performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT sturdyj performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT sultanovg performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT szillasiz performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT teagued performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT teyssierd performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT tuuvat performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT tytgatm performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT vaii performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT vanegasn performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT vendittir performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT verwilligenp performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT vetensw performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT virdia performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT vitulop performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT wajida performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT wangd performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT wangk performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT wickramagen performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT yangy performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT yangu performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT yonghoj performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT yooni performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT youz performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT yui performanceofprototypege11chambersforthecmsmuonspectrometerupgrade AT zaleskis performanceofprototypege11chambersforthecmsmuonspectrometerupgrade |