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Study of the effects of radiation on the CMS Drift Tubes Muon Detector for the HL-LHC
The CMS drift tubes (DT) muon detector, built for withstanding the LHC expected integrated and instantaneous luminosities, will be used also in the High Luminosity LHC (HL-LHC) at a 5 times larger instantaneous luminosity and, consequently, much higher levels of radiation, reaching about 10 times th...
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Lenguaje: | eng |
Publicado: |
2019
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1088/1748-0221/14/12/C12010 http://cds.cern.ch/record/2705998 |
_version_ | 1780964844852215808 |
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author | Abbiendi, G. Alcaraz Maestre, J. Álvarez Fernández, A. Álvarez González, B. Amapane, N. Bachiller, I. Barcala, J.M. Barcellan, L. Battilana, C. Bellato, M. Bencze, G. Benettoni, M. Beni, N. Benvenuti, A. Blanco Ramos, L.C. Boletti, A. Bragagnolo, A. Brochero Cifuentes, J.A. Cafaro, V. Calderon, A. Calvo, E. Cappati, A. Carlin, R. Carrillo Montoya, C.A. Cavallo, F.R. Cela Ruiz, J.M. Cepeda, M. Cerrada, M. Chazin Quero, B. Checchia, P. Ciano, L. Colino, N. Corti, D. Cotto, G. Cuevas, J. Cuffiani, M. Dallavalle, G.M. Dattola, D. De La Cruz, B. DeRemigis, P. Erice Cid, C. Fabbri, F. Fanfani, A. Fasanella, D. Bedoya, C.F. de Trocóniz, J.F. Fernandez Manteca, P. Fernández Menéndez, J. Fernández Ramos, J.P. Folgueras, S. Fouz, M.C. Francia Ferrero, D. García Romero, J. Gasparini, F. Gasparini, U. Ghosh, S. Giordano, V. Casademunt, F.Gomez Gonella, F. González Caballero, I. González Fernández, J.R. González López, O. Goy López, S. Gozzelino, A. Griggio, A. Grosso, G. Guandalini, C. Guiducci, L. Gulmini, M. Hebbeker, T. Heidemann, C. Hernández, J.M. Hoepfner, K. Iemmi, F. Isocrate, R. Josa, M.I. Kiani, B. Lacaprara, S. Lo Meo, S. Marcellini, S. Margoni, M. Marín, J. Mariotti, C. Martín Martín, I. Martínez Morales, J.J. Martínez Rivero, C. Maselli, S. Masetti, G. Meneguzzo, A.T. Merschmeyer, M. Mocellin, G. Modenese, L. Molinero, A. Molnar, J. Montecassiano, F. Moran, D. Navarrete, J.J. Navarria, F. Navarro Tobar, Á. Oller, J.C. Passaseo, M. Pazzini, J. Pegoraro, M. Puerta Pelayo, J. Pelliccioni, M. Philipps, B. Piedra Gomez, J. Pinna Angioni, G.L. Pozzobon, N. Presilla, M. Prieels, C. Primavera, F. Puras Sánchez, J.C. Redondo, I. Redondo Ferrero, D.D. Reithler, H. Rodrigo, T. Rodríguez Bouza, V. Roemer, J. Ronchese, P. Rossin, R. Rotondo, F. Rovelli, T. Sánchez Cruz, S. Sánchez Navas, S. Sastre, J. Scodellaro, L. Simonetto, F. Soares, M.S. Staiano, A. Szillasi, Z. Teyssier, D.F. Toniolo, N. Torassa, E. Trocino, D. Ujvari, B. Ventura, S. Vilar Cortabitarte, R. Vizan Garcia, J. Zanetti, M. Zantis, F.P. Zilizi, G. Zotto, P. |
author_facet | Abbiendi, G. Alcaraz Maestre, J. Álvarez Fernández, A. Álvarez González, B. Amapane, N. Bachiller, I. Barcala, J.M. Barcellan, L. Battilana, C. Bellato, M. Bencze, G. Benettoni, M. Beni, N. Benvenuti, A. Blanco Ramos, L.C. Boletti, A. Bragagnolo, A. Brochero Cifuentes, J.A. Cafaro, V. Calderon, A. Calvo, E. Cappati, A. Carlin, R. Carrillo Montoya, C.A. Cavallo, F.R. Cela Ruiz, J.M. Cepeda, M. Cerrada, M. Chazin Quero, B. Checchia, P. Ciano, L. Colino, N. Corti, D. Cotto, G. Cuevas, J. Cuffiani, M. Dallavalle, G.M. Dattola, D. De La Cruz, B. DeRemigis, P. Erice Cid, C. Fabbri, F. Fanfani, A. Fasanella, D. Bedoya, C.F. de Trocóniz, J.F. Fernandez Manteca, P. Fernández Menéndez, J. Fernández Ramos, J.P. Folgueras, S. Fouz, M.C. Francia Ferrero, D. García Romero, J. Gasparini, F. Gasparini, U. Ghosh, S. Giordano, V. Casademunt, F.Gomez Gonella, F. González Caballero, I. González Fernández, J.R. González López, O. Goy López, S. Gozzelino, A. Griggio, A. Grosso, G. Guandalini, C. Guiducci, L. Gulmini, M. Hebbeker, T. Heidemann, C. Hernández, J.M. Hoepfner, K. Iemmi, F. Isocrate, R. Josa, M.I. Kiani, B. Lacaprara, S. Lo Meo, S. Marcellini, S. Margoni, M. Marín, J. Mariotti, C. Martín Martín, I. Martínez Morales, J.J. Martínez Rivero, C. Maselli, S. Masetti, G. Meneguzzo, A.T. Merschmeyer, M. Mocellin, G. Modenese, L. Molinero, A. Molnar, J. Montecassiano, F. Moran, D. Navarrete, J.J. Navarria, F. Navarro Tobar, Á. Oller, J.C. Passaseo, M. Pazzini, J. Pegoraro, M. Puerta Pelayo, J. Pelliccioni, M. Philipps, B. Piedra Gomez, J. Pinna Angioni, G.L. Pozzobon, N. Presilla, M. Prieels, C. Primavera, F. Puras Sánchez, J.C. Redondo, I. Redondo Ferrero, D.D. Reithler, H. Rodrigo, T. Rodríguez Bouza, V. Roemer, J. Ronchese, P. Rossin, R. Rotondo, F. Rovelli, T. Sánchez Cruz, S. Sánchez Navas, S. Sastre, J. Scodellaro, L. Simonetto, F. Soares, M.S. Staiano, A. Szillasi, Z. Teyssier, D.F. Toniolo, N. Torassa, E. Trocino, D. Ujvari, B. Ventura, S. Vilar Cortabitarte, R. Vizan Garcia, J. Zanetti, M. Zantis, F.P. Zilizi, G. Zotto, P. |
author_sort | Abbiendi, G. |
collection | CERN |
description | The CMS drift tubes (DT) muon detector, built for withstanding the LHC expected integrated and instantaneous luminosities, will be used also in the High Luminosity LHC (HL-LHC) at a 5 times larger instantaneous luminosity and, consequently, much higher levels of radiation, reaching about 10 times the LHC integrated luminosity. Initial irradiation tests of a spare DT chamber at the CERN gamma irradiation facility (GIF++), at large (∼ O(100)) acceleration factor, showed ageing effects resulting in a degradation of the DT cell performance. However, full CMS simulations have shown almost no impact in the muon reconstruction efficiency over the full barrel acceptance and for the full integrated luminosity. A second spare DT chamber was moved inside the GIF++ bunker in October 2017. The chamber was being irradiated at lower acceleration factors, and only 2 out of the 12 layers of the chamber were switched at working voltage when the radioactive source was active, being the other layers in standby. In this way the other non-aged layers are used as reference and as a precise and unbiased telescope of muon tracks for the efficiency computation of the aged layers of the chamber, when set at working voltage for measurements. An integrated dose equivalent to two times the expected integrated luminosity of the HL-LHC run has been absorbed by this second spare DT chamber and the final impact on the muon reconstruction efficiency is under study. Direct inspection of some extracted aged anode wires presented a melted resistive deposition of materials. Investigation on the outgassing of cell materials and of the gas components used at the GIF++ are underway. Strategies to mitigate the ageing effects are also being developed. From the long irradiation measurements of the second spare DT chamber, the effects of radiation in the performance of the DTs expected during the HL-LHC run will be presented. |
id | cern-2705998 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2019 |
record_format | invenio |
spelling | cern-27059982023-02-23T04:00:24Zdoi:10.1088/1748-0221/14/12/C12010http://cds.cern.ch/record/2705998engAbbiendi, G.Alcaraz Maestre, J.Álvarez Fernández, A.Álvarez González, B.Amapane, N.Bachiller, I.Barcala, J.M.Barcellan, L.Battilana, C.Bellato, M.Bencze, G.Benettoni, M.Beni, N.Benvenuti, A.Blanco Ramos, L.C.Boletti, A.Bragagnolo, A.Brochero Cifuentes, J.A.Cafaro, V.Calderon, A.Calvo, E.Cappati, A.Carlin, R.Carrillo Montoya, C.A.Cavallo, F.R.Cela Ruiz, J.M.Cepeda, M.Cerrada, M.Chazin Quero, B.Checchia, P.Ciano, L.Colino, N.Corti, D.Cotto, G.Cuevas, J.Cuffiani, M.Dallavalle, G.M.Dattola, D.De La Cruz, B.DeRemigis, P.Erice Cid, C.Fabbri, F.Fanfani, A.Fasanella, D.Bedoya, C.F.de Trocóniz, J.F.Fernandez Manteca, P.Fernández Menéndez, J.Fernández Ramos, J.P.Folgueras, S.Fouz, M.C.Francia Ferrero, D.García Romero, J.Gasparini, F.Gasparini, U.Ghosh, S.Giordano, V.Casademunt, F.GomezGonella, F.González Caballero, I.González Fernández, J.R.González López, O.Goy López, S.Gozzelino, A.Griggio, A.Grosso, G.Guandalini, C.Guiducci, L.Gulmini, M.Hebbeker, T.Heidemann, C.Hernández, J.M.Hoepfner, K.Iemmi, F.Isocrate, R.Josa, M.I.Kiani, B.Lacaprara, S.Lo Meo, S.Marcellini, S.Margoni, M.Marín, J.Mariotti, C.Martín Martín, I.Martínez Morales, J.J.Martínez Rivero, C.Maselli, S.Masetti, G.Meneguzzo, A.T.Merschmeyer, M.Mocellin, G.Modenese, L.Molinero, A.Molnar, J.Montecassiano, F.Moran, D.Navarrete, J.J.Navarria, F.Navarro Tobar, Á.Oller, J.C.Passaseo, M.Pazzini, J.Pegoraro, M.Puerta Pelayo, J.Pelliccioni, M.Philipps, B.Piedra Gomez, J.Pinna Angioni, G.L.Pozzobon, N.Presilla, M.Prieels, C.Primavera, F.Puras Sánchez, J.C.Redondo, I.Redondo Ferrero, D.D.Reithler, H.Rodrigo, T.Rodríguez Bouza, V.Roemer, J.Ronchese, P.Rossin, R.Rotondo, F.Rovelli, T.Sánchez Cruz, S.Sánchez Navas, S.Sastre, J.Scodellaro, L.Simonetto, F.Soares, M.S.Staiano, A.Szillasi, Z.Teyssier, D.F.Toniolo, N.Torassa, E.Trocino, D.Ujvari, B.Ventura, S.Vilar Cortabitarte, R.Vizan Garcia, J.Zanetti, M.Zantis, F.P.Zilizi, G.Zotto, P.Study of the effects of radiation on the CMS Drift Tubes Muon Detector for the HL-LHChep-exParticle Physics - Experimentphysics.ins-detDetectors and Experimental TechniquesThe CMS drift tubes (DT) muon detector, built for withstanding the LHC expected integrated and instantaneous luminosities, will be used also in the High Luminosity LHC (HL-LHC) at a 5 times larger instantaneous luminosity and, consequently, much higher levels of radiation, reaching about 10 times the LHC integrated luminosity. Initial irradiation tests of a spare DT chamber at the CERN gamma irradiation facility (GIF++), at large (∼ O(100)) acceleration factor, showed ageing effects resulting in a degradation of the DT cell performance. However, full CMS simulations have shown almost no impact in the muon reconstruction efficiency over the full barrel acceptance and for the full integrated luminosity. A second spare DT chamber was moved inside the GIF++ bunker in October 2017. The chamber was being irradiated at lower acceleration factors, and only 2 out of the 12 layers of the chamber were switched at working voltage when the radioactive source was active, being the other layers in standby. In this way the other non-aged layers are used as reference and as a precise and unbiased telescope of muon tracks for the efficiency computation of the aged layers of the chamber, when set at working voltage for measurements. An integrated dose equivalent to two times the expected integrated luminosity of the HL-LHC run has been absorbed by this second spare DT chamber and the final impact on the muon reconstruction efficiency is under study. Direct inspection of some extracted aged anode wires presented a melted resistive deposition of materials. Investigation on the outgassing of cell materials and of the gas components used at the GIF++ are underway. Strategies to mitigate the ageing effects are also being developed. From the long irradiation measurements of the second spare DT chamber, the effects of radiation in the performance of the DTs expected during the HL-LHC run will be presented.The CMS drift tubes (DT) muon detector, built for withstanding the LHC expected integrated and instantaneous luminosities, will be used also in the High Luminosity LHC (HL-LHC) at a 5 times larger instantaneous luminosity and, consequently, much higher levels of radiation, reaching about 10 times the LHC integrated luminosity. Initial irradiation tests of a spare DT chamber at the CERN gamma irradiation facility (GIF++), at large ($\sim$O(100)) acceleration factor, showed ageing effects resulting in a degradation of the DT cell performance. However, full CMS simulations have shown almost no impact in the muon reconstruction efficiency over the full barrel acceptance and for the full integrated luminosity. A second spare DT chamber was moved inside the GIF++ bunker in October 2017. The chamber was being irradiated at lower acceleration factors, and only 2 out of the 12 layers of the chamber were switched at working voltage when the radioactive source was active, being the other layers in standby. In this way the other non-aged layers are used as reference and as a precise and unbiased telescope of muon tracks for the efficiency computation of the aged layers of the chamber, when set at working voltage for measurements. An integrated dose equivalent to two times the expected integrated luminosity of the HL-LHC run has been absorbed by this second spare DT chamber and the final impact on the muon reconstruction efficiency is under study. Direct inspection of some extracted aged anode wires presented a melted resistive deposition of materials. Investigation on the outgassing of cell materials and of the gas components used at the GIF++ are underway. Strategies to mitigate the ageing effects are also being developed. From the long irradiation measurements of the second spare DT chamber, the effects of radiation in the performance of the DTs expected during the HL-LHC run will be presented.arXiv:1912.06178CMS CR-2019/159oai:cds.cern.ch:27059982019-12-12 |
spellingShingle | hep-ex Particle Physics - Experiment physics.ins-det Detectors and Experimental Techniques Abbiendi, G. Alcaraz Maestre, J. Álvarez Fernández, A. Álvarez González, B. Amapane, N. Bachiller, I. Barcala, J.M. Barcellan, L. Battilana, C. Bellato, M. Bencze, G. Benettoni, M. Beni, N. Benvenuti, A. Blanco Ramos, L.C. Boletti, A. Bragagnolo, A. Brochero Cifuentes, J.A. Cafaro, V. Calderon, A. Calvo, E. Cappati, A. Carlin, R. Carrillo Montoya, C.A. Cavallo, F.R. Cela Ruiz, J.M. Cepeda, M. Cerrada, M. Chazin Quero, B. Checchia, P. Ciano, L. Colino, N. Corti, D. Cotto, G. Cuevas, J. Cuffiani, M. Dallavalle, G.M. Dattola, D. De La Cruz, B. DeRemigis, P. Erice Cid, C. Fabbri, F. Fanfani, A. Fasanella, D. Bedoya, C.F. de Trocóniz, J.F. Fernandez Manteca, P. Fernández Menéndez, J. Fernández Ramos, J.P. Folgueras, S. Fouz, M.C. Francia Ferrero, D. García Romero, J. Gasparini, F. Gasparini, U. Ghosh, S. Giordano, V. Casademunt, F.Gomez Gonella, F. González Caballero, I. González Fernández, J.R. González López, O. Goy López, S. Gozzelino, A. Griggio, A. Grosso, G. Guandalini, C. Guiducci, L. Gulmini, M. Hebbeker, T. Heidemann, C. Hernández, J.M. Hoepfner, K. Iemmi, F. Isocrate, R. Josa, M.I. Kiani, B. Lacaprara, S. Lo Meo, S. Marcellini, S. Margoni, M. Marín, J. Mariotti, C. Martín Martín, I. Martínez Morales, J.J. Martínez Rivero, C. Maselli, S. Masetti, G. Meneguzzo, A.T. Merschmeyer, M. Mocellin, G. Modenese, L. Molinero, A. Molnar, J. Montecassiano, F. Moran, D. Navarrete, J.J. Navarria, F. Navarro Tobar, Á. Oller, J.C. Passaseo, M. Pazzini, J. Pegoraro, M. Puerta Pelayo, J. Pelliccioni, M. Philipps, B. Piedra Gomez, J. Pinna Angioni, G.L. Pozzobon, N. Presilla, M. Prieels, C. Primavera, F. Puras Sánchez, J.C. Redondo, I. Redondo Ferrero, D.D. Reithler, H. Rodrigo, T. Rodríguez Bouza, V. Roemer, J. Ronchese, P. Rossin, R. Rotondo, F. Rovelli, T. Sánchez Cruz, S. Sánchez Navas, S. Sastre, J. Scodellaro, L. Simonetto, F. Soares, M.S. Staiano, A. Szillasi, Z. Teyssier, D.F. Toniolo, N. Torassa, E. Trocino, D. Ujvari, B. Ventura, S. Vilar Cortabitarte, R. Vizan Garcia, J. Zanetti, M. Zantis, F.P. Zilizi, G. Zotto, P. Study of the effects of radiation on the CMS Drift Tubes Muon Detector for the HL-LHC |
title | Study of the effects of radiation on the CMS Drift Tubes Muon Detector for the HL-LHC |
title_full | Study of the effects of radiation on the CMS Drift Tubes Muon Detector for the HL-LHC |
title_fullStr | Study of the effects of radiation on the CMS Drift Tubes Muon Detector for the HL-LHC |
title_full_unstemmed | Study of the effects of radiation on the CMS Drift Tubes Muon Detector for the HL-LHC |
title_short | Study of the effects of radiation on the CMS Drift Tubes Muon Detector for the HL-LHC |
title_sort | study of the effects of radiation on the cms drift tubes muon detector for the hl-lhc |
topic | hep-ex Particle Physics - Experiment physics.ins-det Detectors and Experimental Techniques |
url | https://dx.doi.org/10.1088/1748-0221/14/12/C12010 http://cds.cern.ch/record/2705998 |
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studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT marinj studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT mariottic studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT martinmartini studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT martinezmoralesjj studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT martinezriveroc studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT masellis studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT masettig studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT meneguzzoat studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT merschmeyerm studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT mocelling studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT modenesel studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT molineroa studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT molnarj studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT montecassianof studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT morand studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT navarretejj studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT navarriaf studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT navarrotobara studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT ollerjc studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT passaseom studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT pazzinij studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT pegorarom studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT puertapelayoj studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT pelliccionim studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT philippsb studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT piedragomezj studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT pinnaangionigl studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT pozzobonn studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT presillam studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT prieelsc studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT primaveraf studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT purassanchezjc studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT redondoi studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT redondoferrerodd studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT reithlerh studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT rodrigot studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT rodriguezbouzav studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT roemerj studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT ronchesep studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT rossinr studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT rotondof studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT rovellit studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT sanchezcruzs studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT sancheznavass studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT sastrej studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT scodellarol studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT simonettof studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT soaresms studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT staianoa studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT szillasiz studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT teyssierdf studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT toniolon studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT torassae studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT trocinod studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT ujvarib studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT venturas studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT vilarcortabitarter studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT vizangarciaj studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT zanettim studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT zantisfp studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT zilizig studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc AT zottop studyoftheeffectsofradiationonthecmsdrifttubesmuondetectorforthehllhc |