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Irradiation aging of the CMS Drift Tube muon detector

  • D. D.Redondo Ferrero
  • , G. Abbiendi
  • , J. Alcaraz Maestre
  • , A. Álvarez Fernández
  • , B. Álvarez González
  • , 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, S. Caturan, 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 Trocóniz, C. Erice Cid, C. F. Bedoya, F. Fabbri, A. Fanfani, D. Fasanella, P. Fernandez Manteca, J. Fernández Menéndez, J. P.Fernández Ramos, S. Folgueras, M. C. Fouz, D. Francia Ferrero, J. García Romero, F. Gasparini, U. Gasparini, V. Giordano, F. Gomez Casademunt, F. Gonella, I. González Caballero, J. R.González Fernández, O. González López, S. Gosh, S. Goy López, A. Gozzelino, A. Griggio, G. Grosso, C. Guandalini, L. Guiducci, M. Gulmini, T. Hebbeker, C. Heidemann, J. M. Hernández, K. Hoepfner, F. Iemmi, R. Isocrate, M. I. Josa, B. Kiani, S. Lacaprara, S. Lo Meo, S. Marcellini, M. Margoni, J. Marín, C. Mariotti, I. Martín Martín, J. J.Martínez Morales, C. Martínez 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, 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 Sánchez, I. Redondo, H. Reithler, T. Rodrigo, V. Rodríguez Bouza, J. Roemer, P. Ronchese, R. Rossin, F. Rotondo, T. Rovelli, S. Sánchez Cruz, S. Sánchez Navas, J. Sastre, L. Scodellaro, 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
  • Centro de Investigaciones Energéticas Medioambientales y Tecnológicas (CIEMAT)
  • INFN Sezione di Bologna
  • University of Oviedo
  • INFN Sezione di Torino
  • University of Turin
  • University of Padova
  • University of Bologna
  • Wigner Research Centre for Physics
  • Institute of Nuclear Research ATOMKI
  • CSIC-Univ. Cantabria
  • Universidad Autónoma de Madrid
  • European Organization for Nuclear Research
  • RWTH Aachen University
  • Laboratori Nazionali di Legnaro
  • ENEA Climate Modeling and Impacts
  • University of Debrecen

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

1 Citation (Scopus)

Résumé

During the High Luminosity LHC, the Drift Tube chambers installed in the CMS detector need to operate with an integrated dose ten times higher than expected at the LHC due to the increase in integrated luminosity from 300 fb-1 to 3000 fb-1. Irradiations have been performed to assess the performance of the detector under such conditions and to characterize the radiation aging of the detector. The presented analysis focuses on the behaviour of the high voltage currents and the dose measurements needed to extrapolate the results to High Luminosity conditions, using data from the photon irradiation campaign at GIF++ in 2016 as well as the efficiency analysis from the irradiation campaign started in 2017. Although the single-wire loss of high voltage gain observed of 70% is very high, the muon reconstruction efficiency is expected to decrease less than 20% during the full duration of High Luminosity LHC in the areas under highest irradiation.

langue originaleAnglais
Numéro d'article108747
journalRadiation Physics and Chemistry
Volume172
Les DOIs
étatPublié - 1 juil. 2020
Modification externeOui

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