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Study of the Effects of Radiation at the CERN Gamma Irradiation Facility on the CMS Drift Tube Muon Detector for HL-LHC

  • G. Abbiendi
  • , J. Alcaraz Maestre
  • , A. Alvarez Fernandez
  • , B. Alvarez Gonzalez
  • , N. Amapane
  • , I. Bachiller
  • , J. M. Barcala
  • , L. Barcellan
  • , C. Battilana
  • , M. Bellato
  • , G. Bencze
  • , M. Benettoni
  • , N. Beni
  • , A. Benvenuti
  • , L. C. Blanco Ramos
  • , A. Boletti
  • , A. Bragagnolo
  • , J. A. Brochero Cifuentes
  • , V. Cafaro
  • , A. Calderon
  • E. Calvo, A. Cappati, R. Carlin, C. A.Carrillo Montoya, F. R. Cavallo, J. M.Cela Ruiz, M. Cepeda, M. Cerrada, B. Chazin Quero, P. Checchia, L. Ciano, N. Colino, D. Corti, G. Cotto, J. Cuevas, M. Cuffiani, G. M. Dallavalle, D. Dattola, B. De La Cruz, P. De Remigis, J. F.De Troconiz, C. Erice Cid, C. F. Bedoya, F. Fabbri, A. Fanfani, D. Fasanella, P. Fernandez Manteca, J. Fernandez Menendez, J. P.Fernandez Ramos, S. Folgueras, M. C. Fouz, D. Francia Ferrero, J. Garcia Romero, F. Gasparini, U. Gasparini, V. Giordano, F. Gomez Casademunt, F. Gonella, I. Gonzalez Caballero, J. R.Gonzalez Fernandez, O. Gonzalez Lopez, S. Gosh, S. Goy Lopez, A. Gozzelino, A. Griggio, G. Grosso, C. Guandalini, L. Guiducci, M. Gulmini, T. Hebbeker, C. Heidemann, J. M. Hernandez, K. Hoepfner, F. Iemmi, R. Isocrate, M. I. Josa, B. Kiani, S. Lacaprara, S. Lo Meo, S. Marcellini, M. Margoni, J. Marin, C. Mariotti, I. Martin Martin, J. J.Martinez Morales, C. Martinez Rivero, S. Maselli, G. Masetti, A. T. Meneguzzo, M. Merschmeyer, G. Mocellin, L. Modenese, A. Molinero, J. Molnar, F. Montecassiano, D. Moran, J. J. Navarrete, F. Navarria, A. Navarro Tobar, J. C. Oller, M. Passaseo, J. Pazzini, M. Pegoraro, J. Puerta Pelayo, M. Pelliccioni, B. Philipps, J. Piedra Gomez, G. L.Pinna Angioni, N. Pozzobon, M. Presilla, C. Prieels, F. Primavera, J. C.Puras Sanchez, I. Redondo, D. D.Redondo Ferrero, H. Reithler, T. Rodrigo, V. Rodriguez Bouza, J. Roemer, P. Ronchese, R. Rossin, F. Rotondo, T. Rovelli, S. Sanchez Cruz, S. Sanchez Navas, J. Sastre, L. Scodellaro, A. Sharma, F. Simonetto, M. S. Soares, A. Staiano, Z. Szillasi, D. F. Teyssier, N. Toniolo, E. Torassa, D. Trocino, B. Ujvari, S. Ventura, R. Vilar Cortabitarte, J. Vizan Garcia, M. Zanetti, F. P. Zantis, G. Zilizi, P. Zotto
  • INFN Sezione di Bologna
  • Centro de Investigaciones Energéticas Medioambientales y Tecnológicas (CIEMAT)
  • University of Oviedo
  • University of Turin
  • University of Padova
  • Wigner Research Centre for Physics
  • Institute of Nuclear Research ATOMKI
  • CSIC-Univ. Cantabria
  • University of Bologna
  • RWTH Aachen University
  • Laboratori Nazionali di Legnaro
  • University of Debrecen
  • ENEA Climate Modeling and Impacts

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

To sustain and extend its discovery potential, the Large Hadron Collider (LHC) will undergo a major upgrade in the coming years, referred to as High Luminosity LHC (HLLHC), aimed to increase its instantaneous luminosity, 5 times larger than the designed limit, and, consequently leading to high levels of radiation, with the goal to collect 10 times larger the original designed integrated luminosity. The drift tube chambers (DT) of CMS muon detector system is built to proficiently measure and trigger on muons in the harsh radiation environment expected during the HL-LHC era. Ageing studies are performed at the CERNs gamma ray irradiation facility (GIF++) by measuring the muon hit efficiency of these detectors at various LHC operation conditions. One such irradiation campaign was started in October 2017, when a spare MB2 chamber moved inside the bunker and irradiated at lower acceleration factors. Two out of twelve layers of the DT chamber were operated while being irradiated with the radioactive source and then their muon hit efficiency was calculated in coincidence with other ten layers which were kept on the standby. The chamber absorbed an integrated dose equivalent to two times the expected integrated luminosity of the HL-LHC. Investigation on the outgassing of cell materials and of the gas components used at the GIF++ are underway and strategies to mitigate the aging effects are also being developed. The effect of radiation on the performance of DT chamber and its impact on the overall muon reconstruction efficiency expected during the HL-LHC are presented.

Original languageEnglish
Title of host publication2019 IEEE Nuclear Science Symposium and Medical Imaging Conference, NSS/MIC 2019
PublisherInstitute of Electrical and Electronics Engineers Inc.
ISBN (Electronic)9781728141640
DOIs
Publication statusPublished - 1 Oct 2019
Externally publishedYes
Event2019 IEEE Nuclear Science Symposium and Medical Imaging Conference, NSS/MIC 2019 - Manchester, United Kingdom
Duration: 26 Oct 20192 Nov 2019

Publication series

Name2019 IEEE Nuclear Science Symposium and Medical Imaging Conference, NSS/MIC 2019

Conference

Conference2019 IEEE Nuclear Science Symposium and Medical Imaging Conference, NSS/MIC 2019
Country/TerritoryUnited Kingdom
CityManchester
Period26/10/192/11/19

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