Maximal CP-Violation in Neutrino Mass Matrix in light of the latest Daya Bay result on
arXiv:1206.6583 · doi:10.1016/j.physletb.2012.06.076
Abstract
The Daya Bay Collaboration (An et al) has recently proclaimed discovery of non-zero reactor angle, , =0.0920.016(stat)0.005(syst), at which is in conformity with the earlier observations of Abe et al, Adamson et al and Kerret et al last year. The discovery has immense implication for exploring CP-violation in the leptonic sector. In the present work, we examine CP-violation in Majorana neutrino mass matrix, in the basis where charged lepton mass matrix is diagonal, in which the ratio of elements are equal, also, termed as Strong Scaling Anstz (SSA). This Anstz has been known to explain the vanishing of and predict inverted hierarchy (IH) for the neutrino masses. However, to generate a non-zero value of consistent with Daya Bay result one has to deviate from SSA. This deviation will have important implications for CP-violation in the leptonic sector and is one of the issues addressed in the present work. CP is maximally violated because, for central value of obtained from Daya Bay experiment, Dirac-type phase , which corresponds to . We have, also, studied imperative implications for Majorana-type phases , and effective neutrino mass, . The Majorana-type phases , are found to be sharply constrained.
11 pages, 3 figures, references added
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