Unveiling Neutrino Mixing and Leptonic CP Violation
arXiv:hep-ph/0503097 · doi:10.1142/S0217732305016269
Abstract
We review the present understanding of neutrino masses and mixings, discussing what are the unknowns in the three family oscillation scenario. Despite the anticipated success coming from the planned long baseline neutrino experiments in unraveling the leptonic mixing sector, there are two important unknowns which may remain obscure: the mixing angle and the CP-phase . The measurement of these two parameters has led us to consider the combination of superbeams and neutrino factories as the key to unveil the neutrino oscillation picture.
Invited brief review, 18 pages, 6 figures
References in corpus (1)
Cited by in corpus (19)
- Physics at a future Neutrino Factory and super-beam facility
- Leptonic CP violation studies at MiniBooNE in the (3+2) sterile neutrino oscillation hypothesis
- μ-τSymmetry and Maximal CP Violation
- A low energy neutrino factory for large
- New look at the degeneracies in the neutrino oscillation parameters, and their resolution by T2K, NOA and ICAL
- A Neutrino Factory for both Large and Small theta_13
- Super-NOvA: a long-baseline neutrino experiment with two off-axis detectors
- On the improvement of the low energy neutrino factory
- A New Type of Complex Neutrino Mass Texture and mu-tau Symmetry
- Determining the Neutrino Mass Hierarchy and CP Violation in NOvA with a Second Off-Axis Detector
- Determination of Neutrino Mass Texture for Maximal CP Violation
- NOvA and T2K: The race for the neutrino mass hierarchy
- Correlation between Leptonic CP Violation and mu-tau Symmetry Breaking
- Atmospheric neutrinos in ice and measurement of neutrino oscillation parameters
- Neutrino Mass Textures with Maximal CP Violation
- Physics Potential of the Fermilab NuMI beamline
- A combined beta-beam and electron capture neutrino experiment
- Canonical Constraints on Leptonic Cp Violation using UHCR neutrino fluxes
- The light speed vs the observer: the Kennedy-Thorndike test from GRAAL-ESRF