English

Predictions for the Leptonic Dirac CP Violation Phase: a Systematic Phenomenological Analysis

High Energy Physics - Phenomenology 2015-11-10 v2

Abstract

We derive predictions for the Dirac phase δ\delta present in the 3×33\times 3 unitary neutrino mixing matrix U=UeUνU = U_e^{\dagger} \, U_{\nu}, where UeU_e and UνU_{\nu} are 3×33\times 3 unitary matrices which arise from the diagonalisation, respectively, of the charged lepton and the neutrino mass matrices. We consider forms of UeU_e and UνU_{\nu} allowing us to express δ\delta as a function of three neutrino mixing angles, present in UU, and the angles contained in UνU_{\nu}. We consider several forms of UνU_{\nu} determined by, or associated with, symmetries, tri-bimaximal, bimaximal, etc., for which the angles in UνU_{\nu} are fixed. For each of these forms and forms of UeU_e allowing one to reproduce the measured values of the neutrino mixing angles, we construct the likelihood function for cosδ\cos \delta, using i) the latest results of the global fit analysis of neutrino oscillation data, and ii) the prospective sensitivities on the neutrino mixing angles. Our results, in particular, confirm the conclusion, reached in earlier similar studies, that the measurement of the Dirac phase in the neutrino mixing matrix, together with an improvement of the precision on the mixing angles, can provide unique information as regards the possible existence of symmetry in the lepton sector.

Keywords

Cite

@article{arxiv.1504.00658,
  title  = {Predictions for the Leptonic Dirac CP Violation Phase: a Systematic Phenomenological Analysis},
  author = {I. Girardi and S. T. Petcov and A. V. Titov},
  journal= {arXiv preprint arXiv:1504.00658},
  year   = {2015}
}

Comments

37 pages, includes 8 figures and 6 tables; references added; typos corrected; matches published version

R2 v1 2026-06-22T09:09:08.205Z