Precise predictions for Dirac neutrino mixing
arXiv:1609.03886 · doi:10.1103/PhysRevD.95.075005
Abstract
The neutrino mixing parameters are thoroughly studied using renormalization-group evolution of Dirac neutrinos with recently proposed parametrization of the neutrino mixing angles referred as `high-scale mixing relations'. The correlations among all neutrino mixing and violating observables are investigated. The predictions for the neutrino mixing angle are precise, and could be easily tested by ongoing and future experiments. We observe that the high scale mixing unification hypothesis is incompatible with Dirac neutrinos due to updated experimental data.
16 pages, 5 figures, version published in Phys. Rev. D
References in corpus (17)
- Planck 2015 results. XIII. Cosmological parameters
- Updated fit to three neutrino mixing: status of leptonic CP violation
- Neutrino oscillations refitted
- Search for Neutrinoless Double-Beta Decay in Xe with EXO-200
- Limit on Neutrinoless ββ Decay of Xe-136 from the First Phase of KamLAND-Zen and Comparison with the Positive Claim in Ge-76
- Dirac or Inverse Seesaw Neutrino Masses with Gauge Symmetry and Flavour Symmetry
- Radiative Neutrino Mass, Dark Matter and Leptogenesis
- Neutrino Mass and Baryon Asymmetry from Dirac Seesaw
- Neutrino Mixings and Leptonic CP Violation from CKM Matrix and Majorana Phases
- Realistic Neutrinogenesis with Radiative Vertex Correction
- Dirac Neutrinos, Dark Energy and Baryon Asymmetry
- A model of quarks with Delta (6N^2) family symmetry
- Low scale left-right-right-left symmetry
- Grand Unification of Flavor Mixings
- A Built-in Horizontal Symmetry of
- High scale mixing relations as a natural explanation for large neutrino mixing
- Predictions From High Scale Mixing Unification Hypothesis
Cited by in corpus (9)
- Seesaw roadmap to neutrino mass and dark matter
- Generalized Bottom-Tau unification, neutrino oscillations and dark matter: predictions from a lepton quarticity flavor approach
- Seesaw Dirac neutrino mass through dimension-6 operators
- Leptogenesis with testable Dirac neutrino mass generation
- Flavour bounds on the flavon of a minimal and a non-minimal symmetry
- Origin of the VEVs hierarchy
- The role of residual symmetries in dark matter stability and the neutrino nature
- Majorana phases in high-scale mixings unification hypotheses
- Can Leptonic Mixing Matrix have a Wolfenstein Form?