English

Probing axion in the DFSZ model

High Energy Physics - Phenomenology 2026-07-05 v1

Abstract

We show that with the introduction of new right-handed neutrinos NRN_R, the Peccei--Quinn (PQPQ) transformation in the DFSZ (Dine--Fischler--Srednicki--Zhitnitsky) model depends only on the PQPQ charge of the scalar singlet ϕ\phi, namely PQϕPQ_\phi, and is independent of the sine and cosine of arctan(vu/vd)\arctan(v_u/v_d). The model consists of four new scalars: a charged Higgs boson H±H^\pm, a CP-odd scalar AA, and two CP-even scalars with masses at the EW scale (of a few hundred GeV), and a superheavy inflaton Φ\Phi. The scalar fields have been presented in the form of unitary matrices, in which there is no mixing between the axion and the Goldstone boson GZG_Z. As a result, there are two kinds of couplings between the axion and fermions, namely Yukawa-like interactions and anomaly-induced ones associated with derivative axion couplings. {The model belongs to the DFSZ I kind since the axion - photon coupling with \frEN=\fr83\fr E N = \fr 8 3.} The trilinear Higgs self-coupling is investigated. We have shown that, in the parameter region where new scalar fields such as the singly charged Higgs boson H±H^\pm and the CP-odd scalar AA have masses around 150 GeV and the vacuum expectation value of one Higgs doublet (vuv_u) is of the order of a few GeV, the coupling modifier κλ\kappa_\lambda-a probe of new physics-is consistent with the current experimental constraints.

Cite

@article{arxiv.2607.04128,
  title  = {Probing axion in the DFSZ model},
  author = {H. N. Long and N. H. T. Nha},
  journal= {arXiv preprint arXiv:2607.04128},
  year   = {2026}
}

Comments

14 pages, 5 figures

R2 v1 2026-07-22T20:26:48.608Z