Radiative H+1,2W- Z vertices in flavour conserving three Higgs-doublet scenarios

Abstract

A detailed calculation of the radiatively induced H1,2+ W- Z vertices is carried out in the context of flavour conserving three Higgs doublet models (3HDMs). The Type-II, lepton specific and democratic versions of the 3HDM are chosen as representative cases and the alignment limit is adopted. We arrange the amplitudes in UV-finite and gauge-invariant subsets for a sharper understanding of the underlying one-loop structure. Factoring-in various theoretical constraints and the ones from the h γ γ signal strength and the B Xs γ branching ratio, we compute the relevant form factors and compare them among the various 3HDM types taken. The results also indicate a sizeable increment ( 100\%) over the corresponding form factors in 2HDMs. In addition, we probe the H1,2+ W- Z vertices at the 14 TeV LHC using vector boson fusion (VBF). It is seen that production of H1+ via VBF and the subsequent H1+ H2+ H2/A2 decays can have σ × BR in the O(0.1 fb) ball park. Therefore, such a cascade can shed light on the strength of the H1+ W- Z interaction and confirm the presence of two charged scalars thereby acting as a smoking gun signal of a 3HDM.

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