English

Predictive Framework with a Pair of Degenerate Neutrinos at a high scale

High Energy Physics - Phenomenology 2014-11-17 v1

Abstract

Radiative generation of the solar scale Δ\Delta_{\odot} is discussed in the presence of leptonic CP violation. We assume that both the solar scale and Ue3U_{e3} are zero at a high scale and the weak radiative corrections generate them. It is shown that all leptonic mass matrices satisfying these requirements lead to a unique prediction Δcos2θ4δτsin2θAmee2\Delta_{\odot} \cos 2\theta_{\odot}\approx 4 \delta_\tau \sin^2 \theta_A |m_{ee}|^2 for the solar scale in terms of the radiative correction parameter δτ\delta_\tau, the physical solar (atmospheric) mixing angles θodot(θA)\theta_{odot} (\theta_A) and the Majorana neutrino mass meem_{ee} probed in neutrinoless double beta decay. This relation is independent of the mixing matrix and CP-violating phases at the high scale. The presence of CP-violating phases leads to dilution in the solar mixing angle defined at the high scale. Because of this, bi-maximal mixing pattern at the high energy leads to large but non-maximal solar mixing in the low-energy theory. An illustrative model with this feature is discussed.

Keywords

Cite

@article{arxiv.hep-ph/0211378,
  title  = {Predictive Framework with a Pair of Degenerate Neutrinos at a high scale},
  author = {Anjan S. Joshipura and Saurabh D. Rindani and N. Nimai Singh},
  journal= {arXiv preprint arXiv:hep-ph/0211378},
  year   = {2014}
}

Comments

15 pages, including a postscript figure