Abstract

The charged Higgs pair production via photon-photon collisions is investigated in the framework of two Higgs doublet model (2HDM), taking into account a full set of one-loop-level scattering amplitudes, i.e., including electroweak (EW) corrections together with soft and hard QED radiation. The numerical evaluation is carried out for three different scenarios, so-called non-alignment, low-mH and short-cascade, defined in the presence of the up-to-date experimental constraints and consistent with theoretical constraints as well. The total cross sections of γγ→H−H+ are scanned over the plane (mϕ0,s), where ϕ0 is h0 for low-mH0 scenario and H0 for other two scenarios. The regions of the parameter space in which the production rates are sufficiently large are highlighted for each scenario. The production rates in different polarization collision modes of initial beams are also discussed. It can be enhanced up to two-times by oppositely polarized photons at high energies and right-handed polarized photons at low energies. Furthermore, decay channels of the charged Higgs boson are examined for each scenario. It is observed that the one-loop EW corrections, i.e., the virtual plus real radiation corrections, reduce the tree-level cross sections and the relative correction is typically in the range of −10% to −30%, depending on model parameters.

Highlights

  • The Standard Model (SM) is the most successful model of particle physics so far, because its theoretical predictions are magnificently compatible with experiments

  • A huge step was taken for high energy physics with a 125 GeV of Higgs boson observed by both CMS and ATLAS experiments at the LHC [1,2,3]

  • The tree-level and the NLO corrections of the cross sections are numerically evaluated as a function of the center-of-mass energy and the mass of Higgs boson selected as a non-fixed free parameter

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Summary

INTRODUCTION

The Standard Model (SM) is the most successful model of particle physics so far, because its theoretical predictions are magnificently compatible with experiments. The future e−e+ and γγ colliders with high energy and high luminosity have significant potential in the discovery of the charged Higgs boson and in the study of its properties. The main channels of the pair production for charged Higgs bosons in the linear colliders are e−e+ → H−H+ and γγ → H−H+. Higgs bosons pairs through photon-photon collision is investigated in the framework of 2HDM for the first time, including the full one-loop contributions, i.e. electroweak (EW) corrections, as well as hard and soft QED radiation.

REVIEW OF THE TWO HIGGS DOUBLET MODEL
Theoretical and experimental constraints
Benchmark points scenarios
Leading Order Calculation
NLO Corrections
31 H Γ 32
NUMERICAL RESULTS AND DISCUSSIONS
Non-alignment scenario
Short-cascade scenario
Low-mH scenario
Angular Distribution of the Differential Cross Section
Decay channels of the charged Higgs boson
SUMMARY AND CONCLUSIONS
Full Text
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