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arXiv:2111.03960·v2·High Energy Physics — Phenomenology

Illuminating long-lived dark vector bosons via exotic Higgs decays at

Tamer Elkafrawy🇺🇸 · Marcus Hohlmann🇺🇸 · Teruki Kamon🇺🇸 · Paul Padley🇺🇸 · Hyunyong Kim🇺🇸 · Mehdi Rahmani🇺🇸 · Sven Dildick🇺🇸

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Abstract

The possibility of producing a measurable long-lived dark boson, that is assumed to be produced either via its kinetic mixing with the hypercharge gauge boson or via mixing of the observed 125-GeV Higgs boson with the dark Higgs boson, called Higgs mixing, in Run 2 of the Large Hadron Collider (LHC) is investigated. Displaced dimuons in the final state are considered where each of the and the dark bosons decays directly to a dimuon. The Higgs production cross sections via gluon-gluon fusion at 13 TeV calculated to a combination of next-to-next-to-next-to-leading order with QCD corrections (NLO QCD) and next-to-leading order with electroweak corrections (NLO EW) from the literature are used, while the branching fractions are calculated to NLO by using Monte Carlo simulation in the framework of {\textsc{MadGraph5}}\_aMC@NLO and compared to the available analytical calculations to leading order (LO). Sensitivities of the LHC in Run 2 to such searches are discussed.

Comments: 6 pages, 4 figures

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