English

Renormalization Group Induced Neutrino Mass in Supersymmetry without R-parity

High Energy Physics - Phenomenology 2016-08-24 v3

Abstract

We study supersymmetric models without R parity and with universal soft supersymmetry breaking terms. We show that as a result of the renormalization group flow of the parameters, a misalignment between the directions in field space of the down-type Higgs vacuum expectation value vdv_d and of the μ\mu term is always generated. This misalignment induces a mixing between the neutrinos and the neutralinos, resulting in one massive neutrino. By means of a simple approximate analytical expression, we study the dependence on the different parameters that contribute to the misalignment and to mνm_\nu. In large part of the parameter space this effect dominates over the standard one-loop contributions to mνm_\nu; we estimate 1 MeV \lsimmν\lsim1GeV\lsim m_\nu \lsim 1 GeV. Laboratory, cosmological and astrophysical constraints imply mν\lsim100eVm_\nu \lsim 100 eV. To be phenomenologically viable, these models must be supplemented with some additional mechanism to ensure approximate alignment and to suppress mνm_\nu.

Keywords

Cite

@article{arxiv.hep-ph/9610540,
  title  = {Renormalization Group Induced Neutrino Mass in Supersymmetry without R-parity},
  author = {Enrico Nardi},
  journal= {arXiv preprint arXiv:hep-ph/9610540},
  year   = {2016}
}

Comments

21 pages, LaTex. Few points clarified, results unchanged. Final version to appear on Physical Review D