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Results of the first performance tests of the CMS electromagnetic calorimeter

  • P. Adzic
  • , R. Alemany-Fernandez
  • , C. B. Almeida
  • , N. M. Almeida
  • , G. Anagnostou
  • , M. G. Anfreville
  • , I. Anicin
  • , Z. Antunovic
  • , A. Asimidis
  • , E. Auffray
  • , S. Baccaro
  • , D. Barney
  • , L. M. Barone
  • , P. Barrillon
  • , A. Bartoloni
  • , S. Beauceron
  • , F. Beaudette
  • , K. W. Bell
  • , R. Benetta
  • , M. J. Bercher
  • B. Betev, R. Beuselinck, A. Bhardwaj, C. Biino, S. Bimbot, P. Bloch, S. Blyth, M. Bonesini, P. Bordalo, A. Bornheim, J. M. Bourotte, D. Britton, R. M. Brown, R. Bruneliere, P. Busson, T. Camporesi, N. Cartiglia, F. Cavallari, D. Chamont, P. Chang, Y. H. Chang, C. Charlot, E. A. Chen, R. Chipaux, D. J. Cockerill, C. Collard, C. Combaret, S. Costantini, J. C. DaSilva, I. Dafinei, G. Daskalakis, G. Davatz, A. de Min, K. Deiters, M. Dejardin, R. della Negra, P. Depasse, J. Descamp, G. Dewhirst, S. Dhawan, M. Diemoz, G. Dissertori, M. Dittmar, L. Djambazov, L. Dobrzynski, S. Drndarevic, M. Dupanloup, M. Dzelalija, J. Ehlers, H. El Mamouni, A. Elliott-Peisert, I. Evangelou, B. Fabbro, J. L. Faure, J. Fay, F. Ferri, P. S. Flower, G. Franzoni, W. Funk, A. Gaillac, C. Gargiulo, S. Gascon Shotkin, Y. Geerebaert, F. X. Gentit, A. Ghezzi, J. Gilly, A. S. Giolo-Nicollerat, A. Givernaud, S. Gninenko, A. Go, N. Godinovic, N. Golubev, R. Gomez-Reino, P. Govoni, J. Grahl, P. Gras, J. Greenhalgh, J. P. Guillaud, M. Haguenauer, G. Hamel de Montechenault, M. Hansen, H. F. Heath, J. A. Hill, P. R. Hobson, D. Holmes, A. G. Holzner, G. W. Hou, B. Ille, Q. Ingram, A. Jain, P. Janot, P. Jarry, M. A. Karar, S. K. Kataria, V. Katchanov, B. W. Kennedy, K. Kloukinas, B. Koblitz, P. Kokkas, M. Korjik, N. Krasnikov, D. Krpic, A. Kyriakis, M. Lebeau, P. Lecomte, P. Lecoq, M. C. Lemaire, M. Lethuillier, W. Lin, A. L. Lintern, A. Lister, E. Locci, A. B. Lodge, E. Longo, D. Loukas, W. Lustermann, C. Lynch, C. K. Mackay, D. Maletic, I. Mandjavidze, N. Manthos, A. Markou, H. Mathez, V. Matveev, G. Maurelli, E. Menichetti, P. Meridiani, P. Milenovic, G. Milleret, P. Mine, M. Montecchi, M. Mur, Y. Musienko, A. Nardulli, J. Nash, H. Neal, P. Nedelec, P. Negri, F. Nessi-Tedaldi, H. B. Newman, A. Nikitenko, M. M. Obertino, R. A. Ofierzynski, G. C. Organtini, P. Paganini, M. Paganoni, I. Papadopoulos, R. Paramatti, N. Pastrone, F. Pauss, P. Poilleux, I. Puljak, A. Pullia, J. Puzovic, S. Ragazzi, S. Ramos, J. Rander, O. Ravat, M. Raymond, P. A. Razis, N. Redaelli, N. Regnault, D. Renker, S. Reucroft, J. M. Reymond, M. Reynaud, S. Reynaud, T. Romanteau, F. Rondeaux, A. Rosowsky, C. Rovelli, R. Rusack, S. V. Rusakov, M. J. Ryan, H. Rykaczewski, T. Sakhelashvili, R. Salerno, M. Santos, D. Schinzel, C. Seez, I. Semeniouk, P. Sempere Roldan, O. Sharif, P. Sharp, C. Shepherd-Themistocleous, S. Shevchenko, R. K. Shivpuri, G. Sidiropoulos, D. Sillou, A. Singovski, Y. Sirois, A. M. Sirunyan, B. Smith, V. J. Smith, M. Sproston, H. Suter, J. Swain, T. Tabarelli de Fatis, M. Takahashi, R. J. Tapper, A. Tcheremoukhine, I. Teixeira, J. P. Teixeira, O. Teller, F. A. Triantis, S. Troshin, N. Tyurin, S. Udriot, K. Ueno, A. Uzunian, I. van Vulpen, J. Varela, N. Vaz Cardoso, P. Verrecchia, P. Vichoudis, G. Viertel, T. Virdee, M. Wang, J. H. Williams, I. Yaselli, N. Zamiatin, S. Zelepoukine, M. Zeller, L. Y. Zhang, K. Zhu, R. Y. Zhu
  • University of Belgrade
  • Lisboa
  • Instituto de Engenharia de Sistemas e Computadores, Lisbon
  • Institute of Nuclear Physics Demokritos
  • Institut Pierre Simon Laplace, CNRS and CEA
  • University of Split
  • University of Ioannina
  • European Organization for Nuclear Research
  • Centro Ricerche Casaccia
  • Dipartimento di Fisica
  • Imperial College London
  • CCLRC Rutherford Appleton Laboratory
  • Ip Paris
  • ETH Zurich
  • University of Delhi
  • University of Turin
  • National Central University
  • University of Milano-Bicocca
  • California Institute of Technology
  • Université Paris-Sud
  • National Taiwan University
  • Paul Scherrer Institut
  • Yale University
  • Institute for Nuclear Research of the Russian Academy of Sciences
  • Faculty of Electrical Engineering, Mechanical Engineering and Naval Architecture, University of Split
  • University of Minnesota Twin Cities
  • Laboratoire de Physique des Particules
  • University of Bristol
  • Brunel University London
  • Bhabha Atomic Research Centre
  • State Research Center
  • Institute for Nuclear Problems of Belarusian State University
  • Northeastern University
  • University of Cyprus
  • P.N. Lebedev Physical Institute of the Russian Academy of Sciences
  • Yerevan Physics Institute
  • Joint Institute for Nuclear Research, Dubna

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31 Citations (Scopus)

Résumé

Performance tests of some aspects of the CMS ECAL were carried out on modules of the "barrel" sub-system in 2002 and 2003. A brief test with high energy electron beams was made in late 2003 to validate prototypes of the new Very Front End electronics. The final versions of the monitoring and cooling systems, and of the high and low voltage regulation were used in these tests. The results are consistent with the performance targets including those for noise and overall energy resolution, required to fulfil the physics programme of CMS at the LHC.

langue originaleAnglais
Pages (de - à)1-10
Nombre de pages10
journalEuropean Physical Journal C
Volume44
Numéro de publicationSUPPL. 2
Les DOIs
étatPublié - 1 janv. 2005

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