Time reconstruction and performance of the CMS electromagnetic calorimeter

The resolution and the linearity of time measurements made with the CMS electromagnetic calorimeter are studied with samples of data from test beam electrons, cosmic rays, and beam-produced muons. The resulting time resolution measured by lead tungstate crystals is better than 100 ps for energy depo...

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Main Authors: Alver, Burak Han, Bauer, Gerry P, Bendavid, Joshua L., Busza, Wit, Butz, Erik M., Cali, Ivan Amos, Chan, M., D'Enterria, David, Everaerts, Pieter Bruno Bart, Gomez-Ceballos, Guillelmo, Hahn, Kristian Allan, Harris, Philip Coleman, Jaditz, Stephen Hunter, Kim, Y., Klute, Markus, Lee, Youjin, Li, W., Loizides, Constantinos, Ma, T., Miller, M., Paus, Christoph M. E., Roland, Christof E, Roland, Gunther M, Rudolph, Matthew Scott, Stephans, George S. F., Sumorok, Konstanty C, Sung, K., Vaurynovich, Siarhei S., Wenger, Edward Allen, Wyslouch, Boleslaw, Xie, Si, Yilmaz, Yetkin, Yoon, A. S., Nahn, Steven
Other Authors: Massachusetts Institute of Technology. Department of Physics
Format: Article
Language:English
Published: IOP Publishing 2019
Online Access:https://hdl.handle.net/1721.1/121357
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author Alver, Burak Han
Bauer, Gerry P
Bendavid, Joshua L.
Busza, Wit
Butz, Erik M.
Cali, Ivan Amos
Chan, M.
D'Enterria, David
Everaerts, Pieter Bruno Bart
Gomez-Ceballos, Guillelmo
Hahn, Kristian Allan
Harris, Philip Coleman
Jaditz, Stephen Hunter
Kim, Y.
Klute, Markus
Lee, Youjin
Li, W.
Loizides, Constantinos
Ma, T.
Miller, M.
Paus, Christoph M. E.
Roland, Christof E
Roland, Gunther M
Rudolph, Matthew Scott
Stephans, George S. F.
Sumorok, Konstanty C
Sung, K.
Vaurynovich, Siarhei S.
Wenger, Edward Allen
Wyslouch, Boleslaw
Xie, Si
Yilmaz, Yetkin
Yoon, A. S.
Nahn, Steven
author2 Massachusetts Institute of Technology. Department of Physics
author_facet Massachusetts Institute of Technology. Department of Physics
Alver, Burak Han
Bauer, Gerry P
Bendavid, Joshua L.
Busza, Wit
Butz, Erik M.
Cali, Ivan Amos
Chan, M.
D'Enterria, David
Everaerts, Pieter Bruno Bart
Gomez-Ceballos, Guillelmo
Hahn, Kristian Allan
Harris, Philip Coleman
Jaditz, Stephen Hunter
Kim, Y.
Klute, Markus
Lee, Youjin
Li, W.
Loizides, Constantinos
Ma, T.
Miller, M.
Paus, Christoph M. E.
Roland, Christof E
Roland, Gunther M
Rudolph, Matthew Scott
Stephans, George S. F.
Sumorok, Konstanty C
Sung, K.
Vaurynovich, Siarhei S.
Wenger, Edward Allen
Wyslouch, Boleslaw
Xie, Si
Yilmaz, Yetkin
Yoon, A. S.
Nahn, Steven
author_sort Alver, Burak Han
collection MIT
description The resolution and the linearity of time measurements made with the CMS electromagnetic calorimeter are studied with samples of data from test beam electrons, cosmic rays, and beam-produced muons. The resulting time resolution measured by lead tungstate crystals is better than 100 ps for energy deposits larger than 10 GeV. Crystal-to-crystal synchronization with a precision of 500 ps is performed using muons produced with the first LHC beams in 2008.
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spelling mit-1721.1/1213572023-02-26T02:11:10Z Time reconstruction and performance of the CMS electromagnetic calorimeter Alver, Burak Han Bauer, Gerry P Bendavid, Joshua L. Busza, Wit Butz, Erik M. Cali, Ivan Amos Chan, M. D'Enterria, David Everaerts, Pieter Bruno Bart Gomez-Ceballos, Guillelmo Hahn, Kristian Allan Harris, Philip Coleman Jaditz, Stephen Hunter Kim, Y. Klute, Markus Lee, Youjin Li, W. Loizides, Constantinos Ma, T. Miller, M. Paus, Christoph M. E. Roland, Christof E Roland, Gunther M Rudolph, Matthew Scott Stephans, George S. F. Sumorok, Konstanty C Sung, K. Vaurynovich, Siarhei S. Wenger, Edward Allen Wyslouch, Boleslaw Xie, Si Yilmaz, Yetkin Yoon, A. S. Nahn, Steven Massachusetts Institute of Technology. Department of Physics Massachusetts Institute of Technology. Laboratory for Nuclear Science Massachusetts Institute of Technology. Department of Nuclear Science and Engineering The resolution and the linearity of time measurements made with the CMS electromagnetic calorimeter are studied with samples of data from test beam electrons, cosmic rays, and beam-produced muons. The resulting time resolution measured by lead tungstate crystals is better than 100 ps for energy deposits larger than 10 GeV. Crystal-to-crystal synchronization with a precision of 500 ps is performed using muons produced with the first LHC beams in 2008. 2019-06-19T15:32:04Z 2019-06-19T15:32:04Z 2010-03 2009-11 2019-06-18T19:19:09Z Article http://purl.org/eprint/type/JournalArticle 1748-0221 https://hdl.handle.net/1721.1/121357 Chatrchyan, S. "Time reconstruction and performance of the CMS electromagnetic calorimeter." Journal of Instrumentation 5 (March 2010): T03011 © 2010 IOP Publishing Ltd and SISSA en http://dx.doi.org/10.1088/1748-0221/5/03/T03011 Journal of Instrumentation Creative Commons Attribution-Noncommercial-Share Alike http://creativecommons.org/licenses/by-nc-sa/4.0/ application/pdf IOP Publishing arXiv
spellingShingle Alver, Burak Han
Bauer, Gerry P
Bendavid, Joshua L.
Busza, Wit
Butz, Erik M.
Cali, Ivan Amos
Chan, M.
D'Enterria, David
Everaerts, Pieter Bruno Bart
Gomez-Ceballos, Guillelmo
Hahn, Kristian Allan
Harris, Philip Coleman
Jaditz, Stephen Hunter
Kim, Y.
Klute, Markus
Lee, Youjin
Li, W.
Loizides, Constantinos
Ma, T.
Miller, M.
Paus, Christoph M. E.
Roland, Christof E
Roland, Gunther M
Rudolph, Matthew Scott
Stephans, George S. F.
Sumorok, Konstanty C
Sung, K.
Vaurynovich, Siarhei S.
Wenger, Edward Allen
Wyslouch, Boleslaw
Xie, Si
Yilmaz, Yetkin
Yoon, A. S.
Nahn, Steven
Time reconstruction and performance of the CMS electromagnetic calorimeter
title Time reconstruction and performance of the CMS electromagnetic calorimeter
title_full Time reconstruction and performance of the CMS electromagnetic calorimeter
title_fullStr Time reconstruction and performance of the CMS electromagnetic calorimeter
title_full_unstemmed Time reconstruction and performance of the CMS electromagnetic calorimeter
title_short Time reconstruction and performance of the CMS electromagnetic calorimeter
title_sort time reconstruction and performance of the cms electromagnetic calorimeter
url https://hdl.handle.net/1721.1/121357
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