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Mono-Z': searches for dark matter in events with a resonance and missing transverse energy
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We analyze the potential dark matter implications of LHC events with missing transverse momentum and a resonance, such as a Z', decaying to a pair of jets or leptons. This final state contains significant discovery potential, but has not yet been examined in detail by the LHC experiments. We introduce models of Z' production in association with dark matter particles, propose reconstruction and selection strategies, and estimate the sensitivity of the current LHC dataset.
Forward citations
Cited by 3 Pith papers
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Search for the production of dark Higgs in the framework of Mono-Z$^{\prime}$ portal at the FCC-ee simulated electron-positron collisions at $\sqrt{s} = 240$ GeV
Upper limits at 95% CL are placed on the mass of the dark Higgs boson in the Mono-Z' portal model from simulated FCC-ee data at 240 GeV center-of-mass energy.
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Probing torsion field with Einstein-Cartan theory at the HL-LHC: an angular distribution case study
Simulated HL-LHC dimuon angular distributions are used to set expected 95% CL mass limits on an Einstein-Cartan torsion portal dark matter model, but the signal is incorrectly treated as spin-2.
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Probing the dimuon channel of a Z' boson at the HL-LHC using multivariate analysis
A simulated search predicts a 6.8-sigma signal for a 500 GeV dark Higgs in the dimuon plus missing energy channel at the HL-LHC, while heavier masses are not discoverable.
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