Hard color-singlet exchange in dijet events in proton-proton collisions at root s=13 TeV
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Karapınar, Güler
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Abstract
Events where the two leading jets are separated by a pseudorapidity interval devoid of particle activity, known as jet-gap-jet events, are studied in proton-proton collisions at root s = 13 TeV. The signature is expected from hard color-singlet exchange. Each of the highest transverse momentum (p(T)) jets must have p(T)(jet) > 40 GeV and pseudorapidity 1.4 < vertical bar eta(jet)vertical bar < 4.7, with eta(jet1)eta(jet2) < 0, where jet1 and jet2 are the leading and subleading jets in p(T), respectively. The analysis is based on data collected by the CMS and TOTEM experiments during a low luminosity, high-beta* run at the CERN LHC in 2015, with an integrated luminosity of 0.66 pb(-1). Events with a low number of charged particles with p(T) > 0.2 GeV in the interval vertical bar eta vertical bar < 1 between the jets are observed in excess of calculations that assume only color-exchange. The fraction of events produced via color-singlet exchange, f(CSE), is measured as a function of p(T)(jet2), the pseudorapidity difference between the two leading jets, and the azimuthal angular separation between the two leading jets. The fraction f(CSE) has values of 0.4-1.0%. The results are compared with previous measurements and with predictions from perturbative quantum chromodynamics. In addition, the first study of jet-gap-jet events detected in association with an intact proton using a subsample of events with an integrated luminosity of 0.40 pb(-1) is presented. The intact protons are detected with the Roman pot detectors of the TOTEM experiment. The f(CSE) in this sample is 2.91 +/- 0.70(stat)(-1.01)(+1.08)(syst) times larger than that for inclusive dijet production in dijets with similar kinematics.
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Dijet, MULTIPLICITY DISTRIBUTIONS, top: single production, 13000 GeV-cms, P(P)OVER-BAR COLLISIONS, GeV, jet: transverse momentum, transverse momentum dependence, Physics, Particles & Fields, High Energy Physics - Experiment, ENERGY, High Energy Physics - Experiment (hep-ex), PARTICLE PHYSICS;LARGE HADRON COLLIDER;CMS;TOTEM, Hadron-Hadron scattering (experiments), Jets, [PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex], tracking detector, Color Singlet Exchange, LHC, CMS, pp interactions, info:eu-repo/classification/ddc/530, radiation: damage, rapidity: difference, CMS, Physics, ddc:530, Si microstrip and pad detectors, charged particle, angular dependence, CERN LHC Coll, Top physics, Particle tracking detectors (Solid-state detectors), kinematics, High energy physics ; Experimental particle physics ; LHC ; CMS ; Radiation-hard detectors ; Si microstrip and pad detectors ; Radiation damage to detector materials (solid state) ; Particle tracking detectors (Solid-state detectors) ; radiation: damage ; CMS: upgrade ; tracking detector ; semiconductor detector: design ; semiconductor detector: microstrip ; performance ; Hadron-Hadron scattering (experiments) ; Top physics ; p p: scattering ; p p: colliding beams ; top: single production, Physical Sciences, PHOTOPRODUCTION, semiconductor detector: microstrip, PARTICLE PHYSICS, LHC, FRAGMENTATION, color-singled exchange, performance, signature, Radiation-hard detectors, dijet: production, p p: scattering, CERN Lab, [PHYS.HEXP] Physics [physics]/High Energy Physics - Experiment [hep-ex], Particles & Fields, FOS: Physical sciences, dijet events, Astronomy & Astrophysics, transverse momentum, TOTEM, 530, RAPIDITY GAPS, quantum chromodynamics, POMERANCHUK SINGULARITY, SCATTERING, TeV, particle physics, CMS; QCD physics; Color Singlet Exchange, High energy physics, quantum chromodynamics: perturbation theory, ЭБ БГУ::ЕСТЕСТВЕННЫЕ И ТОЧНЫЕ НАУКИ::Физика, Radiation damage to detector materials (solid state), Science & Technology, (P)OVER-BAR-P COLLISIONS, hep-ex, Proton-Gap-Jet-Gap-Jet, Física, LARGE HADRON COLLIDER, QCD, Boson; Partons; Higgs Bosons, * Automatic Keywords *, roman pot, Physics and Astronomy, JETS, jet: rapidity, proton-proton collisions, Experimental particle physics, p p: colliding beams, CMS: upgrade, semiconductor detector: design, 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
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