Predicting the Leptonic Dirac CP Violation Phase from Sum Rules
Arsenii Titov, I. Girardi, S.T. Petcov
Abstract
Open-access reader
Arsenii Titov, I. Girardi, S.T. Petcov
Abstract
Open-access reader
Establishing the status of the CP symmetry in the lepton sector is one of the major goals of the programme of future research in neutrino physics.In the reference 3-neutrino mixing scheme CP-violating effects in neutrino oscillations can be caused by the Dirac CP violation phase δ present in the 3 × 3 unitary neutrino mixing matrix U. Using the fact that U = U † e U ν , where U e and U ν are 3 × 3 unitary matrices which diagonalise respectively the charged lepton and neutrino mass matrices, we consider in a systematic way forms of U e and U ν allowing us to express δ as a function of the neutrino mixing angles present in U and the angles contained in U ν .After obtaining sum rules for cos δ , we consider several forms of U ν dictated by, or associated with, symmetries, such as tri-bimaximal, bimaximal, etc., for which the angles in U ν are fixed.For each of these forms and forms of U e allowing to reproduce the measured values of the neutrino mixing angles, we construct the likelihood function for cos δ , using the prospective uncertainties in the determination of the neutrino mixing angles.Our results show that the measurement of δ along with improvement of the precision on the neutrino mixing angles can provide unique information as regards the possible existence of symmetry in the lepton sector.
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Establishing the status of the CP symmetry in the lepton sector is one of the major goals of the programme of future research in neutrino physics.In the reference 3-neutrino mixing scheme CP-violating effects in neutrino oscillations can be caused by the Dirac CP violation phase δ present in the 3 × 3 unitary neutrino mixing matrix U. Using the fact that U = U † e U ν , where U e and U ν are 3 × 3 unitary matrices which diagonalise respectively the charged lepton and neutrino mass matrices, we consider in a systematic way forms of U e and U ν allowing us to express δ as a function of the neutrino mixing angles present in U and the angles contained in U ν .After obtaining sum rules for cos δ , we consider several forms of U ν dictated by, or associated with, symmetries, such as tri-bimaximal, bimaximal, etc., for which the angles in U ν are fixed.For each of these forms and forms of U e allowing to reproduce the measured values of the neutrino mixing angles, we construct the likelihood function for cos δ , using the prospective uncertainties in the determination of the neutrino mixing angles.Our results show that the measurement of δ along with improvement of the precision on the neutrino mixing angles can provide unique information as regards the possible existence of symmetry in the lepton sector.
Key concepts: Neutrino, Pontecorvo–Maki–Nakagawa–Sakata matrix, Particle physics, Physics, Lepton, Mixing (physics), Neutrino oscillation, Dirac (video compression format)