English

One-loop corrections to the Higgs self-couplings in the singlet extension

High Energy Physics - Phenomenology 2017-04-05 v2

Abstract

We investigate predictions on the triple Higgs boson couplings with radiative corrections in the model with an additional real singlet scalar field. In this model, the second physical scalar state (HH) appears in addition to the Higgs boson (hh) with the mass 125 GeV. The hhhhhh vertex is calculated at the one-loop level, and its possible deviation from the predictions in the standard model is evaluated under various theoretical constraints. The decay rate of HhhH \to hh is also computed at the one-loop level. We also take into account the bound from the precise measurement of the WW boson mass, which gives the upper limit on the mixing angle α\alpha between two physical Higgs bosons for a given value of the mass of HH (mHm_H^{}). We find that the deviation in the hhhhhh coupling from the prediction in the standard model can maximally be about 250\%, 150\% and 75\% for mH=300m_H^{}=300, 500 and 1000 GeV, respectively, under the requirement that the cutoff scale of the model is higher than 3 TeV. We also discuss deviations from the standard model prediction in double Higgs boson production from the gluon fusion at the LHC using the one-loop corrected Higgs boson vertices.

Keywords

Cite

@article{arxiv.1608.01582,
  title  = {One-loop corrections to the Higgs self-couplings in the singlet extension},
  author = {Shinya Kanemura and Mariko Kikuchi and Kei Yagyu},
  journal= {arXiv preprint arXiv:1608.01582},
  year   = {2017}
}

Comments

Version accepted in NPB