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Leptonic cascade decays of a heavy Higgs boson through vectorlike leptons at the LHC

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arxiv 2204.13272 v1 pith:WXXZHS6U submitted 2022-04-28 hep-ph hep-ex

classification hep-phhep-ex
keywords heavyhiggsleptonsvectorlikebosonleptonicmassesresults
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

We demonstrate the potential of fully leptonic cascade decays of a heavy neutral Higgs boson through vectorlike leptons as a simultaneous probe for extended Higgs sectors and extra matter particles at the LHC. The processes we explore are unique in that their event topologies lead to di-boson-like leptonic final states with a lepton pair which does not reconstruct the mass of a gauge boson. By recasting existing $2\ell + E_T^{\rm miss}$ and $3/4\ell$ searches channels using run2 data from the LHC we obtain $\textit{model independent}$ bounds on the masses of heavy scalars and vectorlike leptons and use these results to explore future prospects at the HL-LHC. Our results can be directly applied to any kind of new physics scenarios sharing the final states and the event topology. For concreteness, we apply our results to a benchmark scenario: a two Higgs doublet model type-II augmented with vectorlike leptons. Remarkably, even with current data the sensitivity of our analysis shows a reach for masses of a heavy neutral Higgs and vectorlike leptons up to 2 TeV and 1.5 TeV, respectively. Even for low $\tan\beta \gtrsim 1,$ the analysis retains sensitivity to heavy Higgs masses slightly above 1 TeV. The future sensitivities at the HL-LHC extend the reach for heavy Higgses and new leptons to 2.7 TeV and 2 TeV, respectively.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Novel Multilepton Signatures from the Fermionic Portal to Vector Dark Matter

    hep-ph 2026-07 conditional novelty 5.0 of 10

    A topology-based six-muon search at the HL-LHC could probe vector-like muon dark-portal partners up to about 1.9 TeV.

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