English

Leptogenesis, $\mu-\tau$ Symmetry and $\theta_{13}$

High Energy Physics - Phenomenology 2008-11-26 v1

Abstract

We show that in theories where neutrino masses arise from type I seesaw formula with three right handed neutrinos and where large atmospheric mixing angle owes its origin to an approximate leptonic μτ\mu-\tau interchange symmetry, the primordial lepton asymmetry of the Universe, ϵl\epsilon_l can be expressed in a simple form in terms of low energy neutrino oscillation parameters as ϵl=(aΔm2+bΔmA2θ132)\epsilon_l = (a \Delta m^2_\odot+ b \Delta m^2_A \theta^2_{13}), where aa and bb are parameters characterizing high scale physics and are each of order 102\leq 10^{-2} eV2^{-2}. We also find that for the case of two right handed neutrinos, ϵlθ132\epsilon_l \propto \theta^2_{13} as a result of which, the observed value of baryon to photon ratio implies a lower limit on θ13\theta_{13}. For specific choices of the CP phase δ\delta we find θ13\theta_{13} is predicted to be between 0.100.150.10-0.15.

Keywords

Cite

@article{arxiv.hep-ph/0502026,
  title  = {Leptogenesis, $\mu-\tau$ Symmetry and $\theta_{13}$},
  author = {R. N. Mohapatra and S. Nasri and Haibo Yu},
  journal= {arXiv preprint arXiv:hep-ph/0502026},
  year   = {2008}
}

Comments

16 pages, one figure