Search for Narrow Resonances in Dilepton Mass Spectra in Proton–proton Collisions at S=13 Tev and Combination With 8 Tev Data
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Abstract
A search for narrow resonances in dielectron and dimuon invariant mass spectra has been performed using data obtained from proton–proton collisions at s=13 TeV collected with the CMS detector. The integrated luminosity for the dielectron sample is 2.7 fb−1 and for the dimuon sample 2.9 fb−1. The sensitivity of the search is increased by combining these data with a previously analyzed set of data obtained at s=8 TeV and corresponding to a luminosity of 20 fb−1. No evidence for non-standard-model physics is found, either in the 13 TeV data set alone, or in the combined data set. Upper limits on the product of production cross section and branching fraction have also been calculated in a model-independent manner to enable interpretation in models predicting a narrow dielectron or dimuon resonance structure. Limits are set on the masses of hypothetical particles that could appear in new-physics scenarios. For the ZSSM ′ particle, which arises in the sequential standard model, and for the superstring inspired Zψ ′ particle, 95% confidence level lower mass limits for the combined data sets and combined channels are found to be 3.37 and 2.82 TeV, respectively. The corresponding limits for the lightest Kaluza–Klein graviton arising in the Randall–Sundrum model of extra dimensions with coupling parameters 0.01 and 0.10 are 1.46 and 3.11 TeV, respectively. These results significantly exceed the limits based on the 8 TeV LHC data.
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Large Hadron Collider (LHC), Compact Muon Solenoid, Narrow resonances, Extra dimensions, Compact Muon Solenoid, dilepton: mass spectrum, 13000 GeV-cms, superstring, standard model, Large Hadron Collider (LHC), Physics, Particles & Fields, high energy physics, High Energy Physics - Experiment, electron: pair production, High Energy Physics - Experiment (hep-ex), Narrow resonances, [PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex], Randall-Sundrum model, Narrow resonance, Four leptons, info:eu-repo/classification/ddc/530, Exotica, dimuon: resonance, dimuon, Cms, new physics, CMS, Extra Dimensions, Physics, ddc:530, 001, Nuclear & Particles Physics, 520, muon: pair production, CERN LHC Coll, Physics, Nuclear, Dilepton, CMS; Dileptons; Extra dimensions; Narrow resonances; High Energy Physics - Experiment; High Energy Physics - Experiment; Nuclear and High Energy Physics, LHC, CMS, Physical Sciences, Extra dimensions, PARTICLE PHYSICS, LHC, CMS; Dileptons; Narrow resonances; Extra dimensions, narrow resonance, Dileptons, p p: scattering, Nuclear and High Energy Physics, [PHYS.HEXP] Physics [physics]/High Energy Physics - Experiment [hep-ex], mass: lower limit, QC1-999, Particles & Fields, dielectron, Narrow Resonances, FOS: Physical sciences, Astronomy & Astrophysics, 530, CMS; Dileptons; Extra dimensions; Narrow resonances;, 0202 Atomic, Molecular, Nuclear, Particle And Plasma Physics, mass spectrum: (electron positron), Nuclear, structure, Extra dimension, experimental particle physics, Science & Technology, hep-ex, PARTICLE PHYSICS;LARGE HADRON COLLIDER;CMS, Molecular, 500, high energy physics ; experimental particle physics ; LHC ; CMS ; standard model, graviton: Kaluza-Klein, cross section: branching ratio: upper limit, sensitivity, LARGE HADRON COLLIDER, mass spectrum: (muon+ muon-), CMS; Dileptons; Extra dimensions; Narrow resonances; Nuclear and High Energy Physics, Physics and Astronomy, gravitation, 0202 Atomic, Particle And Plasma Physics, higher-dimensional, p p: colliding beams, CMS; Dileptons; Extra dimensions; Narrow resonances, experimental results
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01 natural sciences, 06 humanities and the arts, 0103 physical sciences, 0105 earth and related environmental sciences, 0604 arts
Citation
Khachatryan, V., Sirunyan, A.M., Tumasyan, A., Adam, W., Asilar, E., Bergauer, T.,...CMS Collaboration (2017). Search for narrow resonances in dilepton mass spectra in proton–proton collisions at √s=13 TeV and combination with 8 TeV data. Physics Letters, Section B, 768, 57-80. doi:10.1016/j.physletb.2017.02.010
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