English

Charged Higgs Discovery in the W plus "Dark" Vector Boson Decay Mode

High Energy Physics - Phenomenology 2015-06-18 v2 High Energy Physics - Experiment

Abstract

In Two Higgs doublet extensions of the Standard Model, flavor-changing neutral current constraints can be addressed by introducing a U(1)' gauge symmetry, under which the Higgs doublets carry different charges. That scenario implies the presence of a H^\pm W^\mp Z' vertex at tree level. For the light "dark" Z model (Z'=Z_d) with m_{Z_d} < 10 GeV, such a coupling leads to the dominant decay mode H^\pm \to W^\pm + Z_d (for m_{H^\pm} \lsim 175 GeV), rather than the usual type I model decay H^\pm \to \tau^\pm \nu, for a broad range of parameters. We find that current analyses do not place significant bounds on this scenario. Over much of the parameter space considered, the decay of a pair-produced t ({\bar t}) into H^+ b (H^- {\bar b}) provides the dominant H^\pm production. Analysis of available LHC data can likely cover significant ranges of our parameters, if Z_d \to \mu^+\mu^- has a branching ratio of \sim 20%. If the Z_d decays mainly invisibly then probing the entire relevant parameter space would likely require additional data from future LHC runs. We briefly discuss the phenomenology for m_{H^\pm}\gsim 175 GeV.

Keywords

Cite

@article{arxiv.1401.2164,
  title  = {Charged Higgs Discovery in the W plus "Dark" Vector Boson Decay Mode},
  author = {Hooman Davoudiasl and William J. Marciano and Raymundo Ramos and Marc Sher},
  journal= {arXiv preprint arXiv:1401.2164},
  year   = {2015}
}

Comments

5 pages. New material on production of the charged Higgs in t tbar and in association with a top quark, as well as some references, added