English

Quartic Coupling Unification in the Maximally Symmetric 2HDM

High Energy Physics - Phenomenology 2019-10-10 v3

Abstract

We consider the Maximally Symmetric Two-Higgs Doublet Model (MS-2HDM) in which the so-called Standard Model (SM) alignment can be naturally realised as a consequence of an accidental SO(5) symmetry in the Higgs sector. This symmetry is broken (i) explicitly by renormalization-group (RG) effects and (ii) softly by the bilinear scalar mass term m122m^2_{12}. We find that in the MS-2HDM all quartic couplings can unify at large RG scales μX1011\mu_X \sim 10^{11}\,-1020\,10^{20} GeV. In particular, we show that quartic coupling unification can take place in two different conformally invariant points, where all quartic couplings vanish. We perform a vacuum stability analysis of the model in order to ensure that the electro-weak vacuum is sufficiently long-lived. The MS-2HDM is a minimal and very predictive extension of the SM governed by only three additional parameters: the unification scale μX\mu_X, the charged Higgs mass Mh±M_{h^{\pm}} (or m122m^2_{12}) and tanβ\tan\beta, which allow one to determine the entire Higgs sector of the model. In terms of these input parameters, we present illustrative predictions of misalignment for the SM-like Higgs-boson couplings to the W±W^\pm and ZZ bosons and, for the first time, to the top and bottom quarks.

Keywords

Cite

@article{arxiv.1904.06723,
  title  = {Quartic Coupling Unification in the Maximally Symmetric 2HDM},
  author = {Neda Darvishi and Apostolos Pilaftsis},
  journal= {arXiv preprint arXiv:1904.06723},
  year   = {2019}
}

Comments

Minor typo corrected

R2 v1 2026-06-23T08:39:03.602Z