English

Light (and darkness) from a light hidden Higgs

High Energy Physics - Phenomenology 2018-08-01 v2 High Energy Physics - Experiment

Abstract

We examine light diphoton signals from extended Higgs sectors possessing (approximate) fermiophobia with Standard Model (SM) fermions as well as custodial symmetry. This class of Higgs sectors can be realized in various beyond the SM scenarios and is able to evade many experimental limits, even at light masses, which are otherwise strongly constraining. Below the WWWW threshold, the most robust probes of the neutral component are di and multi-photon searches. Utilizing the dominant Drell-Yan Higgs pair production mechanism and combining it with updated LHC diphoton data, we derive robust upper bounds on the allowed branching ratio for masses between 4516045 - 160 GeV. Furthermore, masses 110\lesssim 110 GeV are ruled out if the coupling to photons is dominated by WW boson loops. We then examine two simple ways to evade these bounds via cancellations between different loop contributions or by introducing decays into an invisible sector. This also opens up the possibility of future LHC diphoton signals from a light hidden Higgs sector. As explicit realizations, we consider the Georgi-Machacek (GM) and Supersymmetric GM (SGM) models which contain custodial (degenerate) Higgs bosons with suppressed couplings to SM fermions and, in the SGM model, a (neutralino) LSP. We also breifly examine the recent 3σ\sim 3\sigma CMS diphoton excess at 95\sim 95 GeV.

Keywords

Cite

@article{arxiv.1805.01970,
  title  = {Light (and darkness) from a light hidden Higgs},
  author = {Roberto Vega and Roberto Vega-Morales and Keping Xie},
  journal= {arXiv preprint arXiv:1805.01970},
  year   = {2018}
}

Comments

references added, typos corrected, version to be published

R2 v1 2026-06-23T01:45:45.247Z