English

A discrete symmetry group for maximal atmospheric neutrino mixing

High Energy Physics - Phenomenology 2015-06-25 v2

Abstract

We propose a discrete non-abelian symmetry group which enforces maximal atmospheric neutrino mixing, while θ13=0\theta_{13} = 0 and the solar mixing angle θ12\theta_{12} remains undetermined; without finetuning, θ12\theta_{12} will be large but non-maximal. Our extension of the Standard Model has three right-handed neutrino singlets νR\nu_R and implements the seesaw mechanism. Furthermore, we have an enlarged scalar sector with three Higgs doublets and two scalar gauge singlets; the latter have masses and vacuum expectation values of the order of the seesaw scale. Lepton mixing stems exclusively from the νR\nu_R Majorana mass matrix, where non-diagonal elements are generated by the vacuum expectation values of the scalar singlets. The model predicts a neutrino mass spectrum with m3>m2>m1m_3 > m_2 > m_1 and the effective Majorana mass of neutrinoless ββ\beta\beta decay is equal to m1m2/m3m_1 m_2 / m_3.

Keywords

Cite

@article{arxiv.hep-ph/0305046,
  title  = {A discrete symmetry group for maximal atmospheric neutrino mixing},
  author = {W. Grimus and L. Lavoura},
  journal= {arXiv preprint arXiv:hep-ph/0305046},
  year   = {2015}
}

Comments

9 pages, no figures, plain LaTeX; new section added and misprints corrected, version to be published in Phys. Lett. B