English

Planck Scale Origin of Non-zero $\theta_{13}$ and Super-WIMP Dark Matter

High Energy Physics - Phenomenology 2019-09-18 v2 Cosmology and Nongalactic Astrophysics

Abstract

We study a discrete flavour symmetric scenario for neutrino mass and dark matter under the circumstances where such global discrete symmetries can be explicitly broken at Planck scale, possibly by gravitational effects. Such explicit breaking of discrete symmetries mimic as Planck suppressed operators in the model which can have non-trivial consequences for neutrino and dark matter sectors. In particular, we study a flavour symmetric model which, at renormalisable level, gives rise to tri-bimaximal type neutrino mixing with vanishing reactor mixing angle θ13=0\theta_{13}=0, a stable inert scalar doublet behaving like a weakly interacting massive particle (WIMP) and a stable singlet inert fermion which does not interact with any other particles. The introduction of Planck suppressed operators which explicitly break the discrete symmetries, can give rise to the generation of non-zero θ13\theta_{13} in agreement with neutrino data and also open up decay channels of inert scalar doublet into singlet neutral inert fermion leading to the realisation of the super-WIMP dark matter scenario. We show that the correct neutrino phenomenology can be obtained in this model while discussing three distinct realisation of the super-WIMP dark matter scenario.

Keywords

Cite

@article{arxiv.1906.02756,
  title  = {Planck Scale Origin of Non-zero $\theta_{13}$ and Super-WIMP Dark Matter},
  author = {Debasish Borah and Biswajit Karmakar and Dibyendu Nanda},
  journal= {arXiv preprint arXiv:1906.02756},
  year   = {2019}
}

Comments

38 pages, 13 figures, to appear in Physical Review D