2016Proceedings of The European Physical Society Conference on High Energy Physics — PoS(EPS-HEP2015)Open access

Predicting the Leptonic Dirac CP Violation Phase from Sum Rules

Arsenii Titov, I. Girardi, S.T. Petcov

Open full text 0 citations

Abstract

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.

Open-access reader

About this research paper

What this paper is about

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.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

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)

Related papers

Back to paper searchBrowse research topicsOriginal source
Predicting the Leptonic Dirac CP Violation Phase from Sum Rules — Research Paper | ScholarLens