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Calibration and Performance of the CMS Electromagnetic Calorimeter During the LHC Run II. / The CMS collaboration.

Engineering of Scintillation Materials and Radiation Technologies - Selected Articles of ISMART 2018. ed. / Mikhail Korzhik; Alexander Gektin. Springer Gabler, 2019. p. 293-298 (Springer Proceedings in Physics; Vol. 227).

Research output: Chapter in Book/Report/Conference proceedingConference contributionResearchpeer-review

Harvard

The CMS collaboration 2019, Calibration and Performance of the CMS Electromagnetic Calorimeter During the LHC Run II. in M Korzhik & A Gektin (eds), Engineering of Scintillation Materials and Radiation Technologies - Selected Articles of ISMART 2018. Springer Proceedings in Physics, vol. 227, Springer Gabler, pp. 293-298, 6th International Conference on Engineering of Scintillation Materials and Radiation Technologies, ISMART 2018, Minsk, Belarus, 09.10.2018. https://doi.org/10.1007/978-3-030-21970-3_22

APA

The CMS collaboration (2019). Calibration and Performance of the CMS Electromagnetic Calorimeter During the LHC Run II. In M. Korzhik, & A. Gektin (Eds.), Engineering of Scintillation Materials and Radiation Technologies - Selected Articles of ISMART 2018 (pp. 293-298). (Springer Proceedings in Physics; Vol. 227). Springer Gabler. https://doi.org/10.1007/978-3-030-21970-3_22

Vancouver

The CMS collaboration. Calibration and Performance of the CMS Electromagnetic Calorimeter During the LHC Run II. In Korzhik M, Gektin A, editors, Engineering of Scintillation Materials and Radiation Technologies - Selected Articles of ISMART 2018. Springer Gabler. 2019. p. 293-298. (Springer Proceedings in Physics). doi: 10.1007/978-3-030-21970-3_22

Author

The CMS collaboration. / Calibration and Performance of the CMS Electromagnetic Calorimeter During the LHC Run II. Engineering of Scintillation Materials and Radiation Technologies - Selected Articles of ISMART 2018. editor / Mikhail Korzhik ; Alexander Gektin. Springer Gabler, 2019. pp. 293-298 (Springer Proceedings in Physics).

BibTeX

@inproceedings{20ec3c93bd7a42f09c4e39eabed76c39,
title = "Calibration and Performance of the CMS Electromagnetic Calorimeter During the LHC Run II",
abstract = "Many physics analyses using the Compact Muon Solenoid (CMS) detector at the LHC require accurate electron and photon energy measurements. Excellent energy resolution is crucial for the study of Higgs boson decays with electromagnetic particles in the final state, as well as searches for very high mass resonances decaying to energetic photons or electrons. The CMS electromagnetic calorimeter (ECAL) is presently operating at the LHC with proton-proton collisions at 13 TeV center-of-mass energy, 25 ns bunch spacing, and an unprecedented instantaneous luminosity. High pileup levels and the ageing of crystals from exposure to large particle fluencies necessitate a retuning of the ECAL readout, trigger thresholds, and reconstruction algorithms, to maintain the best possible performance in these increasingly challenging conditions. In addition, the energy response of the detector must be precisely calibrated and monitored, injecting laser light to correct for crystal transparency changes due to irradiation. A dedicated calibration of each detector channel is performed with physics events exploiting electrons from W and Z boson decays, photons from pi0 decays, and from the azimuthally symmetric energy distribution of minimum bias events. This talk presents the new reconstruction algorithm and calibration strategies that have been implemented and the excellent performance achieved by the CMS ECAL throughout LHC Run II.",
keywords = "CERN, Compact muon solenoid, Electromagnetic calorimetry",
author = "{The CMS collaboration} and Tatyana Dimova",
year = "2019",
month = jan,
day = "1",
doi = "10.1007/978-3-030-21970-3_22",
language = "English",
isbn = "9783030219697",
series = "Springer Proceedings in Physics",
publisher = "Springer Gabler",
pages = "293--298",
editor = "Mikhail Korzhik and Alexander Gektin",
booktitle = "Engineering of Scintillation Materials and Radiation Technologies - Selected Articles of ISMART 2018",
address = "Germany",
note = "6th International Conference on Engineering of Scintillation Materials and Radiation Technologies, ISMART 2018 ; Conference date: 09-10-2018 Through 12-10-2018",

}

RIS

TY - GEN

T1 - Calibration and Performance of the CMS Electromagnetic Calorimeter During the LHC Run II

AU - The CMS collaboration

AU - Dimova, Tatyana

PY - 2019/1/1

Y1 - 2019/1/1

N2 - Many physics analyses using the Compact Muon Solenoid (CMS) detector at the LHC require accurate electron and photon energy measurements. Excellent energy resolution is crucial for the study of Higgs boson decays with electromagnetic particles in the final state, as well as searches for very high mass resonances decaying to energetic photons or electrons. The CMS electromagnetic calorimeter (ECAL) is presently operating at the LHC with proton-proton collisions at 13 TeV center-of-mass energy, 25 ns bunch spacing, and an unprecedented instantaneous luminosity. High pileup levels and the ageing of crystals from exposure to large particle fluencies necessitate a retuning of the ECAL readout, trigger thresholds, and reconstruction algorithms, to maintain the best possible performance in these increasingly challenging conditions. In addition, the energy response of the detector must be precisely calibrated and monitored, injecting laser light to correct for crystal transparency changes due to irradiation. A dedicated calibration of each detector channel is performed with physics events exploiting electrons from W and Z boson decays, photons from pi0 decays, and from the azimuthally symmetric energy distribution of minimum bias events. This talk presents the new reconstruction algorithm and calibration strategies that have been implemented and the excellent performance achieved by the CMS ECAL throughout LHC Run II.

AB - Many physics analyses using the Compact Muon Solenoid (CMS) detector at the LHC require accurate electron and photon energy measurements. Excellent energy resolution is crucial for the study of Higgs boson decays with electromagnetic particles in the final state, as well as searches for very high mass resonances decaying to energetic photons or electrons. The CMS electromagnetic calorimeter (ECAL) is presently operating at the LHC with proton-proton collisions at 13 TeV center-of-mass energy, 25 ns bunch spacing, and an unprecedented instantaneous luminosity. High pileup levels and the ageing of crystals from exposure to large particle fluencies necessitate a retuning of the ECAL readout, trigger thresholds, and reconstruction algorithms, to maintain the best possible performance in these increasingly challenging conditions. In addition, the energy response of the detector must be precisely calibrated and monitored, injecting laser light to correct for crystal transparency changes due to irradiation. A dedicated calibration of each detector channel is performed with physics events exploiting electrons from W and Z boson decays, photons from pi0 decays, and from the azimuthally symmetric energy distribution of minimum bias events. This talk presents the new reconstruction algorithm and calibration strategies that have been implemented and the excellent performance achieved by the CMS ECAL throughout LHC Run II.

KW - CERN

KW - Compact muon solenoid

KW - Electromagnetic calorimetry

UR - http://www.scopus.com/inward/record.url?scp=85075622785&partnerID=8YFLogxK

U2 - 10.1007/978-3-030-21970-3_22

DO - 10.1007/978-3-030-21970-3_22

M3 - Conference contribution

AN - SCOPUS:85075622785

SN - 9783030219697

T3 - Springer Proceedings in Physics

SP - 293

EP - 298

BT - Engineering of Scintillation Materials and Radiation Technologies - Selected Articles of ISMART 2018

A2 - Korzhik, Mikhail

A2 - Gektin, Alexander

PB - Springer Gabler

T2 - 6th International Conference on Engineering of Scintillation Materials and Radiation Technologies, ISMART 2018

Y2 - 9 October 2018 through 12 October 2018

ER -

ID: 22500714