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Search for Physics beyond the Standard Model in Events with Overlapping Photons and Jets
, P. Kalbhor, A. S. Muhammad, , A. K. Sikdar
Published in American Physical Society
2019
PMID: 31922872
Volume: 123
   
Issue: 24
Abstract
Results are reported from a search for new particles that decay into a photon and two gluons, in events with jets. Novel jet substructure techniques are developed that allow photons to be identified in an environment densely populated with hadrons. The analyzed proton-proton collision data were collected by the CMS experiment at the LHC, in 2016 at s=13 TeV, and correspond to an integrated luminosity of 35.9 fb-1. The spectra of total transverse hadronic energy of candidate events are examined for deviations from the standard model predictions. No statistically significant excess is observed over the expected background. The first cross section limits on new physics processes resulting in such events are set. The results are interpreted as upper limits on the rate of gluino pair production, utilizing a simplified stealth supersymmetry model. The excluded gluino masses extend up to 1.7 TeV, for a neutralino mass of 200 GeV and exceed previous mass constraints set by analyses targeting events with isolated photons. © 2019 CERN. for the CMS Collaboration. Published by the American Physical Society under the terms of the "https://creativecommons.org/licenses/by/4.0/" Creative Commons Attribution 4.0 International license. Further distribution of this work must maintain attribution to the author(s) and the published article's title, journal citation, and DOI. Funded by SCOAP3.
About the journal
JournalData powered by TypesetPhysical Review Letters
PublisherData powered by TypesetAmerican Physical Society
ISSN00319007
Open AccessNo
Concepts (18)
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    Germanium compounds
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    Tellurium compounds
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    Integrated luminosity
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    ISOLATED PHOTONS
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    MASS CONSTRAINTS
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    NEUTRALINO MASS
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    Pair production
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    Proton proton collisions
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    SUBSTRUCTURE TECHNIQUE
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    The standard model
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    Photons
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    Article
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    GLUON
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    Hadron
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    Luminance
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    Photon
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    Physics
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    Prediction