English

Constraints on the Doublet Left-Right Symmetric Model from Higgs data

High Energy Physics - Phenomenology 2023-03-27 v2

Abstract

We study the constraints on the doublet left-right symmetric model (DLRSM) arising due to the Higgs data. The SU(2)LSU(2)_L symmetry of this model is broken by three vacuum expectation values, κ1\kappa_1, κ2\kappa_2, and vLv_L. Most studies of this model assume that the ratios r=κ2/κ1r = \kappa_2/\kappa_1 and w=vL/κ1w = v_L/\kappa_1 are very small. In this work, we study the constraints imposed on rr and ww by the Higgs data from LHC. We consider the most general scalar potential and calculate the masses of the CP-even scalars and the couplings of the lightest of these scalars to itself, to WW and ZZ gauge bosons, and to the third generation quarks. We find that there is no lower bound on either rr or ww. Equating the mass of the lightest CP-even scalar to 125125 GeV leads to an upper limit w<6.7w < 6.7. The requirement that the Yukawa coupling of the quarks to the Higgs bidoublet of the model should be perturbative yields the upper bounds r<0.8r < 0.8 and w<3.5w < 3.5. The Yukawa coupling of the bottom quark to the lightest CP-even scalar strongly disfavours value of r,w<0.1r, w < 0.1 and shows a marked preference for values of wO(1)w \sim \mathcal{O}(1).

Keywords

Cite

@article{arxiv.2211.08445,
  title  = {Constraints on the Doublet Left-Right Symmetric Model from Higgs data},
  author = {Siddhartha Karmakar and Jai More and Akhila Kumar Pradhan and S. Uma Sankar},
  journal= {arXiv preprint arXiv:2211.08445},
  year   = {2023}
}

Comments

Changes in text to improve clarity. Journal version

R2 v1 2026-06-28T05:58:59.330Z