Accès ouvert déclaré
2007
article
Design, performance, and calibration of CMS forward calorimeter wedges
S. Abdullin, V. Abramov, B. S. Acharya, Mark Raymond Adams, N. Akchurin, U. Akgun, E. W. Anderson, G. Antchev, M. Arcidy, S. Ayan, S. Aydin, M. M. Baarmand, K. Babich, Drew Baden, M. N. Bakirci, Sud. Banerjee, Sun. Banerjee, Robert L. Bard, V. E. Barnes, H. S. Bawa, G. Baiatian, G. Bencze, S. B. Beri, V. Bhatnagar, A. Bodek, H. S. Budd, K. Burchesky, T. Camporesi, K. Cankoçak, Kenneth Carrell, S. Çerçi, S.R. Chendvankar, Y. S. Chung, L. Cremaldi, P. Cushman, J. Damgov, P. de Barbaro, M. Deliomeroglu, A. I. Demianov, T. de Visser, Л. Дімітров, K. Dindar, S. Dugad, I. Dumanoğlu, F. Duru, J. E. Elias, D. Elvira, I. Emeliantchik, S. C. Eno, E. Eşkut, A. Fenyvesi, W. C. Fisher, J. Freeman, H. Gamsizkan, V. Gavrilov, V. Genchev, Y. Gershtein, I. Golutvin, P. I. Goncharov, T. Grassi, D. Green, A. Gribushin, Б. В. Гринев, E. Gülmez, Kazım Gümüş, T. Haelen, S. Hagopian, V. Hagopian, M. Hashemi, J. M. Hauptman, E. Hazen, A. Heering, N. P. Ilyina, E. Isiksal, C. Jarvis, K. F. Johnson, V. Kaftanov, V. Kalagin, A. Kalinin, D. J. Karmgard, S.D. Kalmani, Srikanth Reddy Katta, M. Kaur, M. Kaya, A. Kayis Topaksu, R. G. Kellogg, A. Khmelnikov, H. J. Kim, I. Kisselevich, O. Kodolova, J. Kohli, V. Kolossov, A. Korablev, Yu. P. Korneev, I. Kosarev, S. Koylu, L. Kramer, A. N. Krinitsyn, A. Krokhotin, V. I. Kryshkin, S. Kuleshov, Arun Kumar, S. Kunori, P. Kurt, A. Polatöz, A. T. Laasanen, V. P. Ladygin, Á. László, C. Lawlor, D. Lazic, L. Levchuk, S. Linn, D. O. Litvintsev, L. Litov, S. Łoś, V. Lubinsky, V. Lukanin, Y. G., J. Mans, P. Markowitz, V. Massolov, G. Martı́nez, K. Mazumdar, J.-P. Merlo, H. Mermerkaya, G. Mescheryakov, A. Mestvirishvili, M. Miller, M. Mohammadi Najafabadi, P. Moissenz, N. K. Mondal, P. Nagaraj, E. Norbeck, J. Olson, Y. Onel, G. Önengüt, N. Özdeş-Koca, Cengiz S. Ozkan, Halil Özkurt, S. Özkorucuklu, S. Paktinat, A. F. Pal’, M. Patil, A. Penzo, S. Petrushanko, A. Petrosyan, V. Pikalov, S. Piperov, V. Podrasky, A. Pompoš, C. Posch, W. Qiang, L. Reddy, J. Reidy, R. Ruchti, E. Rogalev, J. Rohlf, A. Ronzhin, A. Ryazanov, G. Safronov, D. A. Sanders, C. Sanzeni, L. Sarycheva, B. Satyanarayana, I. Schmidt, S. Sekmen, S. Semenov, V. Senchishin, Sergey Sergeyev, M. Serin-Zeyrek, R. Sever, J. B. Singh, A. M. Sirunyan, A. Skuja, S. Sharma, Bruce Sherwood, N. Shumeiko, В. Смирнов, K. Sogut, P. Sorokin, M. Spezziga, R. Stefanovich, V. Stolin, L. Sulak, I. Suzuki, V. V. Talov, K. Teplov, R. Thomas, H. Topakli, C. Tully, L.K. Turchanovich, A. Ulyanov, I. Vankov, Irina Vardanyan, Fernando Varela, M. Vergili, P. Verma, G. Vesztergombi, R. Vidal, A. Vishnevskiy, E. Vlassov, I. Vodopiyanov, A. Volkov, A. Volodko, L. Wang, M. Wetstein, D. Winn, R. Wigmans, J. Whitmore, S. Wu, E. Yazgan, A. A. Yershov, T. Yetkin, P. Zalán, A. Zarubin, M. Zeyrek
86Citations signalées, ce qui n’est pas une note de qualité
38Institutions déclarées
11Pays d’affiliation déclarés
Rattachement africain : us, ru, in, tr, am, hu, ch, bg, ua, ir, it.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
We report on the test beam results and calibration methods using high energy electrons, pions and muons with the CMS forward calorimeter (HF). The HF calorimeter covers a large pseudorapidity region ( $3\leq|\eta|\leq5$ ), and is essential for a large number of physics channels with missing transverse energy. It is also expected to play a prominent role in the measurement of forward tagging jets in weak boson fusion channels in Higgs production. The HF calorimeter is based on steel absorber with embedded fused-silica-core optical fibers where Cherenkov radiation forms the basis of signal generation. Thus, the detector is essentially sensitive only to the electromagnetic shower core and is highly non-compensating (e/h≈5). This feature is also manifest in narrow and relatively short showers compared to similar calorimeters based on ionization. The choice of fused-silica optical fibers as active material is dictated by its exceptional radiation hardness. The electromagnetic energy resolution is dominated by photoelectron statistics and can be expressed in the customary form as $\frac{a}{\sqrt{E}}\oplus{b}$ . The stochastic term a is 198% and the constant term b is 9%. The hadronic energy resolution is largely determined by the fluctuations in the neutral pion production in showers, and when it is expressed as in the electromagnetic case, a = 280% and b = 11%.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Design, performance, and calibration of CMS forward calorimeter wedges
- Date Crossref
- 15/11/2007
- Éditeur
- Springer Science and Business Media LLC
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Particle physics theoretical and experimental studiesParticle Detector Development and PerformanceRadiation Detection and Scintillator Technologies