English

Low-Scale Seesaw and the CP Violation in Neutrino Oscillations

High Energy Physics - Phenomenology 2018-04-27 v2

Abstract

We consider a version of the low-scale type I seesaw mechanism for generating small neutrino masses, as an alternative to the standard seesaw scenario. It involves two right-handed (RH) neutrinos ν1R\nu_{1R} and ν2R\nu_{2R} having a Majorana mass term with mass MM, which conserves the lepton charge LL. The RH neutrino ν2R\nu_{2R} has lepton-charge conserving Yukawa couplings g2g_{\ell 2} to the lepton and Higgs doublet fields, while small lepton-charge breaking effects are assumed to induce tiny lepton-charge violating Yukawa couplings g1g_{\ell 1} for ν1R\nu_{1R}, l=e,μ,τl=e,\mu,\tau. In this approach the smallness of neutrino masses is related to the smallness of the Yukawa coupling of ν1R\nu_{1R} and not to the large value of MM: the RH neutrinos can have masses in the few GeV to a few TeV range. The Yukawa couplings g2|g_{\ell 2}| can be much larger than g1|g_{\ell 1}|, of the order g2104102|g_{\ell 2}| \sim 10^{-4} - 10^{-2}, leading to interesting low-energy phenomenology. We consider a specific realisation of this scenario within the Froggatt-Nielsen approach to fermion masses. In this model the Dirac CP violation phase δ\delta is predicted to have approximately one of the values δπ/4,3π/4\delta \simeq \pi/4,\, 3\pi/4, or 5π/4,7π/45\pi/4,\, 7\pi/4, or to lie in a narrow interval around one of these values. The low-energy phenomenology of the considered low-scale seesaw scenario of neutrino mass generation is also briefly discussed.

Keywords

Cite

@article{arxiv.1712.09922,
  title  = {Low-Scale Seesaw and the CP Violation in Neutrino Oscillations},
  author = {J. T. Penedo and S. T. Petcov and Tsutomu T. Yanagida},
  journal= {arXiv preprint arXiv:1712.09922},
  year   = {2018}
}

Comments

29 pages, 3 figures, 3 tables; typos corrected; matches published version