Neutrino masses and lepton mixing from
arXiv:1811.09662 · doi:10.1016/j.nuclphysb.2019.114794
Abstract
We analyse in detail the phenomenological implications for lepton masses and mixing derived by the breaking of the discrete symmetries into the subgroups in the neutrino sector and in the charged lepton sector. We derive accurate analytic expressions for the sum of the neutrino masses as well as for the effective Majorana masses and under different hypotheses for the flavon vevs and compare them with the exact numerical results obtained from the diagonalization of the neutrino mass matrix.
40 pages, 9 figures
References in corpus (19)
- Global analysis of three-flavour neutrino oscillations: synergies and tensions in the determination of theta_23, delta_CP, and the mass ordering
- Updated fit to three neutrino mixing: exploring the accelerator-reactor complementarity
- Updated fit to three neutrino mixing: status of leptonic CP violation
- First Results from CUORE: A Search for Lepton Number Violation via Decay of Te
- Improved limit on neutrinoless double beta decay of Ge from GERDA Phase II
- Current unknowns in the three neutrino framework
- Neutrino Mass Ordering from Oscillations and Beyond: 2018 Status and Future Prospects
- Symmetry of Lepton Mixing
- Lepton Mixing from Delta (3 n^2) and Delta (6 n^2) and CP
- Neutrino Mass Sum-rules in Flavor Symmetry Models
- Generalised CP and Family Symmetry in Semi-Direct Models of Leptons
- Lepton Mixing Predictions including Majorana Phases from Flavour Symmetry and Generalised CP
- Lepton Mixing Parameters from Family Symmetry and Generalised CP
- Generalised CP and Family Symmetry
- A Bottom-Up Approach to Lepton Flavor and CP Symmetries
- and CP symmetry and a model with maximal CP violation
- Alternative Schemes of Predicting Lepton Mixing Parameters from Discrete Flavor and CP Symmetry
- Lepton Mixing in Family Symmetry and Generalized CP
- Lepton and Quark Mixing from Stepwise Breaking of Flavor and CP
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- Constraining Low-Scale Flavor Models with and Lepton Flavor Violation
- CP-like Symmetry with Discrete and Continuous Groups and CP Violation/Restoration