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Timing performance of the CMS High Granularity Calorimeter prototype

  • B. Acar
  • , G. Adamov
  • , C. Adloff
  • , S. Afanasiev
  • , N. Akchurin
  • , B. Akgün
  • , F. Khan
  • , M. Alhusseini
  • , J. Alison
  • , A. Alpana
  • , G. Altopp
  • , M. Alyari
  • , S. An
  • , S. Anagul
  • , I. Andreev
  • , P. Aspell
  • , I. Atakisi
  • , O. Bach
  • , A. Baden
  • , G. Bakas
  • A. Bakshi, S. Bannerjee, P. Bargassa, D. Barney, F. Beaudette, F. Beaujean, E. Becheva, A. Becker, P. Behera, A. Belloni, T. Bergauer, M. Besançon, S. Bhattacharya, D. Bhowmik, B. Bilki, P. Bloch, A. Bodek, M. Bonanomi, A. Bonnemaison, S. Bonomally, J. Borg, F. Bouyjou, N. Bower, D. Braga, J. Brashear, E. Brondolin, P. Bryant, A. Buchot Perraguin, J. Bueghly, B. Burkle, A. Butler-Nalin, O. Bychkova, S. Callier, D. Calvet, X. Cao, A. Cappati, B. Caraway, S. Caregari, A. Cauchois, L. Ceard, Y. Cekmecelioglu, S. Cerci, G. Cerminara, M. Chadeeva, N. Charitonidis, R. Chatterjee, Y. Chen, Z. Chen, H. Cheng, K. Cheng, S. Chernichenko, H. Cheung, C. Chien, S. Choudhury, D. Čoko, G. Collura, F. Couderc, M. Danilov, D. Dannheim, W. Daoud, P. Dauncey, A. David, G. Davies, O. Davignon, E. Day, P. De Barbaro, F. De Guio, C. de La Taille, M. De Silva, P. Debbins, M. Defranchis, E. Delagnes, J. Deltoro Berrio, G. Derylo, P. Dias de Almeida, D. Diaz, P. Dinaucourt, J. Dittmann, M. Dragicevic, S. Dugad, F. Dulucq, I. Dumanoglu, V. Dutta, S. Dutta, M. Dünser, J. Eckdahl, T. Edberg, M. El Berni, F. Elias, S. Eno, Yu Ershov, P. Everaerts, S. Extier, F. Fahim, C. Fallon, G. Fedi, B. Fontana Santos Alves, E. Frahm, G. Franzoni, J. Freeman, T. French, P. Gandhi, S. Ganjour, X. Gao, A. Garcia-Bellido, F. Gastaldi, Z. Gecse, Y. Geerebaert, H. Gerwig, O. Gevin, S. Ghosh, A. Gilbert, W. Gilbert, K. Gill, C. Gingu, S. Gninenko, A. Golunov, I. Golutvin, T. Gonzalez, N. Gorbounov, L. Gouskos, A. Gray, Y. Gu, F. Guilloux, Y. Guler, E. Gülmez, J. Guo, E. Gurpinar Guler, M. Hammer, H. Hassanshahi, K. Hatakeyama, A. Heering, V. Hegde, U. Heintz, N. Hinton, J. Hirschauer, J. Hoff, W. S. Hou, X. Hou, H. Hua, J. Incandela, A. Irshad, C. Isik, S. Jain, H. Jheng, U. Joshi, V. Kachanov, A. Kalinin, L. Kalipoliti, A. Kaminskiy, A. Kapoor, O. Kara, A. Karneyeu, M. Kaya, O. Kaya, A. Kayis Topaksu, A. Khukhunaishvili, J. Kieseler, M. Kilpatrick, S. Kim, K. Koetz, T. Kolberg, O. Köseyan, A. Kristić, M. Krohn, K. Krüger, N. Kulagin, S. Kulis, S. Kunori, C. Kuo, V. Kuryatkov, S. Kyre, Y. Lai, K. Lamichhane, G. Landsberg, C. Lange, J. Langford, M. Lee, A. Levin, A. Li, B. Li, J. Li, Y. y. Li, H. Liao, D. Lincoln, L. Linssen, R. Lipton, Y. Liu, A. Lobanov, R. S. Lu, M. Lupi, I. Lysova, A. M. Magnan, F. Magniette, A. Mahjoub, A. Maier, A. Malakhov, S. Mallios, M. Mannelli, J. Mans, A. Marchioro, A. Martelli, G. Martinez, P. Masterson, B. Meng, T. Mengke, A. Mestvirishvili, I. Mirza, S. Moccia, G. Mohanty, F. Monti, I. Morrissey, S. Murthy, J. Musić, Y. Musienko, S. Nabili, A. Nagar, M. Nguyen, A. Nikitenko, D. Noonan, M. Noy, K. Nurdan, C. Ochando, B. Odegard, N. Odell, H. Okawa, Y. Onel, W. Ortez, J. Ozegović, S. Ozkorucuklu, E. Paganis, D. Pagenkopf, V. Palladino, S. Pandey, F. Pantaleo, C. Papageorgakis, I. Papakrivopoulos, J. Parshook, N. Pastika, M. Paulini, P. Paulitsch, T. Peltola, R. Pereira Gomes, H. Perkins, P. Petiot, T. Pierre-Emile, F. Pitters, E. Popova, H. Prosper, M. Prvan, I. Puljak, H. Qu, T. Quast, R. Quinn, M. Quinnan, M. Ramos Garcia, K. Rao, K. Rapacz, L. Raux, G. Reichenbach, M. Reinecke, M. Revering, A. Roberts, T. Romanteau, A. Rose, M. Rovere, A. Roy, P. Rubinov, R. Rusack, V. Rusinov, V. Ryjov, M. Şahin, R. Salerno, A. Sanchez Rodriguez, R. Saradhy, T. Sarkar, M. Şarkışla, J. Sauvan, I. Schmidt, M. Schmitt, E. Scott, C. Seez, F. Sefkow, S. Sharma, I. Shein, A. Shenai, R. Shukla, E. Sicking, P. Sieberer, P. Silva, A. Simsek, Y. Sirois, V. Smirnov, U. Sozbilir, E. Spencer, A. Steen, J. Strait, N. Strobbe, J. Su, E. Sukhov, L. Sun, D. Sunar Cerci, C. Syal, B. Tali, C. Tan, J. Tao, I. Tastan, T. Tatlı, R. Thaus, S. Tekten, D. Thienpont, E. Tiras, M. Titov, D. Tlisov, U. Tok, J. Troska, L. S. Tsai, Z. Tsamalaidze, G. Tsipolitis, A. Tsirou, N. Tyurin, S. Undleeb, D. Urbanski, V. Ustinov, A. Uzunian, M. Van de Klundert, J. Varela, M. Velasco, O. Viazlo, M. Vicente Barreto Pinto, P. Vichoudis, T. Virdee, R. Vizinho de Oliveira, J. Voelker, E. Voirin, M. Vojinović, A. Wade, C. Wang, F. Wang, X. Wang, Z. Wang, Z. Wang, M. Wayne, S. Webb, A. Whitbeck, D. White, R. Wickwire, J. Wilson, D. Winter, H. Wu, L. Wu, M. Wulansatiti Nursanto, C. Yeh, R. Yohay, D. Yu, G. Yu, S. Yu, C. Yuan, F. Yumiceva, I. Yusuff, A. Zacharopoulou, N. Zamiatin, A. Zarubin, S. Zenz, A. Zghiche, H. Zhang, J. Zhang, Y. Zhang, Z. Zhang
  • Bogazici University
  • Georgian Technical University
  • Joint Institute for Nuclear Research
  • CERN
  • University of Iowa
  • Carnegie Mellon University
  • Indian Institute of Science Education and Research Pune
  • Brown University
  • Fermi National Accelerator Laboratory
  • Cukurova University
  • Institute for Nuclear Research of the Russian Academy of Sciences
  • German Electron Synchrotron
  • Laboratório de Instrumentação e Física Experimental de Partículas
  • Indian Institute of Technology Madras
  • Austrian Academy of Sciences
  • Imperial College London
  • Florida State University
  • CAS - Institute of High Energy Physics
  • Baylor University
  • Istanbul University
  • Institute for High Energy Physics of National Research Centre ‘Kurchatov Institute’
  • Indian Institute of Science Bangalore
  • University of Split
  • Fudan University
  • University of Hamburg
  • Alikhanov Institute for Theoretical and Experimental Physics
  • Florida Institute of Technology

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

This paper describes the experience with the calibration, reconstruction and evaluation of the timing capabilities of the CMS HGCAL prototype in the beam tests in 2018. The calibration procedure includes multiple steps and corrections ranging from tens of nanoseconds to a few hundred picoseconds. The timing performance is studied using signals from positron beam particles with energies between 20 GeV and 300 GeV. The performance is studied as a function of particle energy against an external timing reference as well as standalone by comparing the two different halves of the prototype. The timing resolution is found to be 60 ps for single-channel measurements and better than 20 ps for full showers at the highest energies, setting excellent perspectives for the HGCAL calorimeter performance at the HL-LHC.

Original languageEnglish
Article numberP04015
JournalJournal of Instrumentation
Volume19
Issue number4
DOIs
StatePublished - Apr 1 2024

Keywords

  • Calorimeter methods
  • Calorimeters
  • Particle tracking detectors (Solid-state detectors)
  • Timing detectors

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