English

LHC probes of TeV-scale scalars in $\mathrm{SO}(10)$ grand unification

High Energy Physics - Phenomenology 2017-06-01 v4

Abstract

We investigate the possibility of TeV-scale scalars as low energy remnants arising in the non-supersymmetric SO(10)\mathrm{SO}(10) grand unification framework where the field content is minimal. We consider a scenario where the SO(10)\mathrm{SO}(10) gauge symmetry is broken into the gauge symmetry of the Standard Model (SM) through multiple stages of symmetry breaking, and a colored and hypercharged scalar χ\chi picks a TeV-scale mass in the process. The last stage of the symmetry breaking occurs at the TeV scale where the left-right symmetry, i.e. SU(2)LSU(2)RU(1)BLSU(3)C\mathrm{SU}(2)_L\otimes \mathrm{SU}(2)_R\otimes \mathrm{U}(1)_{B-L}\otimes \mathrm{SU}(3)_C, is broken into that of the SM by a singlet scalar field S\mathcal{S} of mass MS1M_{\mathcal{S}}\sim 1 TeV, which is a component of an SU(2)R\mathrm{SU}(2)_R-triplet scalar field, acquiring a TeV-scale vacuum expectation value. For the LHC phenomenology, we consider a scenario where S\mathcal{S} is produced via gluon-gluon fusion through loop interactions with χ\chi and also decays to a pair of SM gauge bosons through χ\chi in the loop. We find that the parameter space is heavily constrained from the latest LHC data. We use a multivariate analysis to estimate the LHC discovery reach of S\mathcal{S} into the diphoton channel.

Keywords

Cite

@article{arxiv.1601.06761,
  title  = {LHC probes of TeV-scale scalars in $\mathrm{SO}(10)$ grand unification},
  author = {Ufuk Aydemir and Tanumoy Mandal},
  journal= {arXiv preprint arXiv:1601.06761},
  year   = {2017}
}

Comments

12 pages, 7 figures, 2 tables. Improved draft by adding new figures and discussions. Accepted version in Advances in High Energy Physics