Publication: Search for dark matter particles in W+W− events with transverse momentum imbalance in proton-proton collisions at $$ \sqrt{s} $$ = 13 TeV
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Springer Science and Business Media LLC
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Abstract A search for dark matter particles is performed using events with a pair of W bosons and large missing transverse momentum. Candidate events are selected by requiring one or two leptons (ℓ = electrons or muons). The analysis is based on proton-proton collision data collected at a center-of-mass energy of 13 TeV by the CMS experiment at the LHC and corresponding to an integrated luminosity of 138 fb −1. No significant excess over the expected standard model background is observed in the ℓνqq and 2ℓ2ν final states of the W+W − boson pair. Limits are set on dark matter production in the context of a simplified dark Higgs model, with a dark Higgs boson mass above the W+W − mass threshold. The dark matter phase space is probed in the mass range 100–300 GeV, extending the scope of previous searches. Current exclusion limits are improved in the range of dark Higgs masses from 160 to 250 GeV, for a dark matter mass of 200 GeV.
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Journal of High Energy Physics
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OPEN
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transverse momentum: missing-energy, Vector Boson Production, lepton, GeV-cms, dark matter: phase space, QC770-798, dark matter: direct detection, Atomic, Beyond Standard Model, Dark Matter, Hadron-Hadron Scattering, Vector, Boson Production, Pp collisions, HIGGS-BOSON, Candidates, Particle physics, Large hadron collider, CMS, Particle and Plasma Physics, Mathematical physics (for-2020), threshold, Particle and high energy physics (for-2020), info:eu-repo/classification/ddc/530, Particle and High Energy Physics (for-2020), Physics, Physical Sciences (for-2020), ddc:530, p p, CERN LHC Coll, Physical Sciences, Particle physics, transverse momentum, missing-energy, p p: scattering, [PHYS.HEXP] Physics [physics]/High Energy Physics - Experiment [hep-ex], p p, scattering, mass: threshold, beyond standard model, dark matter, hadron-hadron scattering, vector boson production, Higgs particle, Nuclear and plasma physics (for-2020), vector boson production, phase space, muon, TeV, dark matter, production, Pp collisions, Hadron-Hadron Scattering, final state: ((n)jet dilepton), dark matter: mass, scattering, Molecular, Nuclear & Particles Physics (science-metrix), Large hadron collider, dark matter, phase space, W, final state, Beyond Standard Model, Dark Matter, Hadron-Hadron Scattering, Vector Boson Production, dark matter: hadroproduction, Beyond Standard Model, Higgs model, production, Experimental particle physics, p p: colliding beams, HIGGS-BOSON, electron, Nuclear and Plasma Physics (for-2020), GeV, channel cross section: upper limit, High Energy Physics - Experiment, W: pair production, High Energy Physics - Experiment (hep-ex), [PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex], Dark Matter, Mathematical Physics, hadron-hadron scattering, Candidates, Quantum Physics, CMS, Higgs particle, mass, Particle and High Energy Physics, Quantum Physics (for), Nuclear and Plasma Physics, hidden sector, Nuclear & Particles Physics, missing-energy, Higgs particle: mass, mass, threshold, LHC, beyond standard model, Particle and Plasma Physics (for), final state: ((n)jet lepton), FOS: Physical sciences, transverse momentum, final state, dark matter, Nuclear and particle physics. Atomic energy. Radioactivity, Mathematical Physics (for), Nuclear, High energy physics, Beyond Standard Model, Dark Matter, Hadron-Hadron Scattering, Vector Boson Production, background, Q Science (General), QC Physics, Physics and Astronomy, Atomic, mass, dark matter, mass, experimental results