English

Higgs-dilaton(radion) system confronting the LHC Higgs data

High Energy Physics - Phenomenology 2015-06-18 v3 High Energy Physics - Experiment

Abstract

We consider the Higgs-dilaton(radion) system using the trace of energy-momentum tensor (T μμT_{~\mu}^\mu) with the full Standard Model (SM) gauge symmetry GSMSU(3)c×SU(2)L×U(1)YG_{\rm SM} \equiv SU(3)_c \times SU(2)_L \times U(1)_Y, and find out that the resulting phenomenology for the Higgs-dilaton(radion) system is distinctly different from the earlier studies based on the T μμT_{~\mu}^\mu with the unbroken subgroup HSMSU(3)c×U(1)emH_{\rm SM} \equiv SU(3)_c \times U(1)_{\rm em} of GSMG_{\rm SM}. After electroweak symmetry breaking (EWSB), the SM Higgs boson and dilaton(radion) will mix with each other, and there appear two Higgs-like scalar bosons and the Higgs-dilaton mixing changes the scalar phenomenology in interesting ways. The signal strengths for the gggg-initiated channels could be modified significantly compared with the SM predictions due to the QCD scale anomaly and the Higgs-dilaton(radion) mixing, whereas anomaly contributions are almost negligible for other channels. We also discuss the self-couplings and the signal strengths of the 126126 GeV scalar boson in various channels and possible constraints from the extra light/heavy scalar boson. The Higgs-dilaton(radion) system considered in this work has a number of distinctive features that could be tested by the upcoming LHC running and at the ILC.

Keywords

Cite

@article{arxiv.1401.5586,
  title  = {Higgs-dilaton(radion) system confronting the LHC Higgs data},
  author = {Dong-Won Jung and P. Ko},
  journal= {arXiv preprint arXiv:1401.5586},
  year   = {2015}
}

Comments

Minor corrections, including a few new figures, version appearing in Physics Letters B

R2 v1 2026-06-22T02:52:00.929Z