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Uniformity and Stability of the CMS RPC Detector at the LHC
The Resistive Plate Chambers (RPCs) are employed in the CMS experiment at the LHC as dedicated trigger system both in the barrel and in the endcap. This note presents results of the RPC detector uniformity and stability during the 2011 data taking period, and preliminary results obtained with 2012 d...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2012
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1088/1748-0221/8/03/P03017 https://dx.doi.org/10.22323/1.159.0005 http://cds.cern.ch/record/1477020 |
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author | Costantini, S. Beernaert, K. Cimmino, A. Garcia, G. Lellouch, J. Marinov, A. Ocampo, A. Strobbe, N. Thyssen, F. Tytgat, M. Verwilligen, P. Yazgan, E. Zaganidis, N. Dimitrov, A. Hadjiiska, R. Litov, L. Pavlov, B. Petkov, P. Aleksandrov, A. Genchev, V. Iaydjiev, P. Rodozov, M. Shopova, M. Sultanov, G. Ban, Y. Cai, J. Ge, Y. Li, Q. Qian, S. Xue, Z. Avila, C. Chaparro, L.F. Gomez, J.P. Gomez Moreno, B. Osorio Oliveros, A.F. Sanabria, J.C. Assran, Y. Sharma, A. Abbrescia, M. Calabria, C. Colaleo, A. Loddo, F. Maggi, M. Pugliese, G. Benussi, L. Bianco, S. Colafranceschi, S. Piccolo, D. Buontempo, S. Carrillo, C. Iorio, O. Paolucci, P. Berzano, U. Gabusi, M. Vitulo, P. Kang, M. Lee, K.S. Park, S.K. Shin, S. Choi, Y. Goh, J. Kim, M.S. Seo, H. |
author_facet | Costantini, S. Beernaert, K. Cimmino, A. Garcia, G. Lellouch, J. Marinov, A. Ocampo, A. Strobbe, N. Thyssen, F. Tytgat, M. Verwilligen, P. Yazgan, E. Zaganidis, N. Dimitrov, A. Hadjiiska, R. Litov, L. Pavlov, B. Petkov, P. Aleksandrov, A. Genchev, V. Iaydjiev, P. Rodozov, M. Shopova, M. Sultanov, G. Ban, Y. Cai, J. Ge, Y. Li, Q. Qian, S. Xue, Z. Avila, C. Chaparro, L.F. Gomez, J.P. Gomez Moreno, B. Osorio Oliveros, A.F. Sanabria, J.C. Assran, Y. Sharma, A. Abbrescia, M. Calabria, C. Colaleo, A. Loddo, F. Maggi, M. Pugliese, G. Benussi, L. Bianco, S. Colafranceschi, S. Piccolo, D. Buontempo, S. Carrillo, C. Iorio, O. Paolucci, P. Berzano, U. Gabusi, M. Vitulo, P. Kang, M. Lee, K.S. Park, S.K. Shin, S. Choi, Y. Goh, J. Kim, M.S. Seo, H. |
author_sort | Costantini, S. |
collection | CERN |
description | The Resistive Plate Chambers (RPCs) are employed in the CMS experiment at the LHC as dedicated trigger system both in the barrel and in the endcap. This note presents results of the RPC detector uniformity and stability during the 2011 data taking period, and preliminary results obtained with 2012 data. The detector uniformity has been ensured with a dedicated High Voltage scan with LHC collisions, in order to determine the optimal operating working voltage of each individual RPC chamber installed in CMS. Emphasis is given on the procedures and results of the High Voltage calibration. Moreover, an increased detector stability has been obtained by automatically taking into account temperature and atmospheric pressure variations in the CMS cavern. |
id | cern-1477020 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2012 |
record_format | invenio |
spelling | cern-14770202021-10-14T02:55:59Zdoi:10.1088/1748-0221/8/03/P03017doi:10.22323/1.159.0005http://cds.cern.ch/record/1477020engCostantini, S.Beernaert, K.Cimmino, A.Garcia, G.Lellouch, J.Marinov, A.Ocampo, A.Strobbe, N.Thyssen, F.Tytgat, M.Verwilligen, P.Yazgan, E.Zaganidis, N.Dimitrov, A.Hadjiiska, R.Litov, L.Pavlov, B.Petkov, P.Aleksandrov, A.Genchev, V.Iaydjiev, P.Rodozov, M.Shopova, M.Sultanov, G.Ban, Y.Cai, J.Ge, Y.Li, Q.Qian, S.Xue, Z.Avila, C.Chaparro, L.F.Gomez, J.P.Gomez Moreno, B.Osorio Oliveros, A.F.Sanabria, J.C.Assran, Y.Sharma, A.Abbrescia, M.Calabria, C.Colaleo, A.Loddo, F.Maggi, M.Pugliese, G.Benussi, L.Bianco, S.Colafranceschi, S.Piccolo, D.Buontempo, S.Carrillo, C.Iorio, O.Paolucci, P.Berzano, U.Gabusi, M.Vitulo, P.Kang, M.Lee, K.S.Park, S.K.Shin, S.Choi, Y.Goh, J.Kim, M.S.Seo, H.Uniformity and Stability of the CMS RPC Detector at the LHCDetectors and Experimental TechniquesThe Resistive Plate Chambers (RPCs) are employed in the CMS experiment at the LHC as dedicated trigger system both in the barrel and in the endcap. This note presents results of the RPC detector uniformity and stability during the 2011 data taking period, and preliminary results obtained with 2012 data. The detector uniformity has been ensured with a dedicated High Voltage scan with LHC collisions, in order to determine the optimal operating working voltage of each individual RPC chamber installed in CMS. Emphasis is given on the procedures and results of the High Voltage calibration. Moreover, an increased detector stability has been obtained by automatically taking into account temperature and atmospheric pressure variations in the CMS cavern.The Resistive Plate Chambers (RPCs) are employed in the CMS experiment at the LHC as dedicated trigger system both in the barrel and in the endcap. This note presents results of the RPC detector uniformity and stability during the 2011 data taking period, and preliminary results obtained with 2012 data. The detector uniformity has been ensured with a dedicated High Voltage scan with LHC collisions, in order to determine the optimal operating working voltage of each individual RPC chamber installed in CMS. Emphasis is given on the procedures and results of the High Voltage calibration. Moreover, an increased detector stability has been obtained by automatically taking into account temperature and atmospheric pressure variations in the CMS cavern.The Resistive Plate Chambers (RPCs) are employed in the CMS experiment at the LHC as dedicated trigger system both in the barrel and in the endcap. This note presents results of the RPC detector uniformity and stability during the 2011 data taking period, and preliminary results obtained with 2012 data. The detector uniformity has been ensured with a dedicated High Voltage scan with LHC collisions, in order to determine the optimal operating working voltage of each individual RPC chamber installed in CMS. Emphasis is given on the procedures and results of the High Voltage calibration. Moreover, an increased detector stability has been obtained by automatically taking into account temperature and atmospheric pressure variations in the CMS cavern.arXiv:1209.1989oai:cds.cern.ch:14770202012-09-11 |
spellingShingle | Detectors and Experimental Techniques Costantini, S. Beernaert, K. Cimmino, A. Garcia, G. Lellouch, J. Marinov, A. Ocampo, A. Strobbe, N. Thyssen, F. Tytgat, M. Verwilligen, P. Yazgan, E. Zaganidis, N. Dimitrov, A. Hadjiiska, R. Litov, L. Pavlov, B. Petkov, P. Aleksandrov, A. Genchev, V. Iaydjiev, P. Rodozov, M. Shopova, M. Sultanov, G. Ban, Y. Cai, J. Ge, Y. Li, Q. Qian, S. Xue, Z. Avila, C. Chaparro, L.F. Gomez, J.P. Gomez Moreno, B. Osorio Oliveros, A.F. Sanabria, J.C. Assran, Y. Sharma, A. Abbrescia, M. Calabria, C. Colaleo, A. Loddo, F. Maggi, M. Pugliese, G. Benussi, L. Bianco, S. Colafranceschi, S. Piccolo, D. Buontempo, S. Carrillo, C. Iorio, O. Paolucci, P. Berzano, U. Gabusi, M. Vitulo, P. Kang, M. Lee, K.S. Park, S.K. Shin, S. Choi, Y. Goh, J. Kim, M.S. Seo, H. Uniformity and Stability of the CMS RPC Detector at the LHC |
title | Uniformity and Stability of the CMS RPC Detector at the LHC |
title_full | Uniformity and Stability of the CMS RPC Detector at the LHC |
title_fullStr | Uniformity and Stability of the CMS RPC Detector at the LHC |
title_full_unstemmed | Uniformity and Stability of the CMS RPC Detector at the LHC |
title_short | Uniformity and Stability of the CMS RPC Detector at the LHC |
title_sort | uniformity and stability of the cms rpc detector at the lhc |
topic | Detectors and Experimental Techniques |
url | https://dx.doi.org/10.1088/1748-0221/8/03/P03017 https://dx.doi.org/10.22323/1.159.0005 http://cds.cern.ch/record/1477020 |
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