Spontaneous CP violation in A4xSU(5) with Constrained Sequential Dominance 2
arXiv:1301.6764 · doi:10.1103/PhysRevD.87.096018
Abstract
We revisit a two right-handed neutrino model with two texture zeros, namely an indirect model based on A4 with the recently proposed new type of constrained sequential dominance (CSD2), involving vacuum alignments along the (0,1,-1)^T and (1,0,2)^T directions in flavour space, which are proportional to the neutrino Dirac mass matrix columns. In this paper we construct a renormalizable and unified indirect A4xSU(5) model along these lines and show that, with spontaneous CP violation and a suitable vacuum alignment of the phases, the charged lepton corrections lead to a reactor angle in good agreement with results from Daya Bay and RENO. The model predicts a right-angled unitarity triangle in the quark sector and a Dirac CP violating oscillation phase in the lepton sector of delta approximately 130 degrees, while providing a good fit to all quark and lepton masses and mixing angles.
25 pages, 6 figures; version to be published in PRD
References in corpus (26)
- Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC
- Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC
- Observation of electron-antineutrino disappearance at Daya Bay
- Indication of Electron Neutrino Appearance from an Accelerator-produced Off-axis Muon Neutrino Beam
- Neutrino Mass and Mixing with Discrete Symmetry
- Updated Values of Running Quark and Lepton Masses
- Possible Alternatives to Tri-bimaximal Mixing
- CP and Discrete Flavour Symmetries
- Comparing Trimaximal Mixing and Its Variants with Deviations from Tri-bimaximal Mixing
- Minimal Modification To The Tri-bimaximal Neutrino Mixing
- A model for trimaximal lepton mixing
- Twisted Flavors and Tri/bi-Maximal Neutrino Mixing
- Mass Independent Textures and Symmetry
- New GUT predictions for quark and lepton mass ratios confronted with phenomenology
- The Constrained NMSSM with a 126 GeV Higgs boson: A global analysis
- Quark and lepton masses at the GUT scale including SUSY threshold corrections
- Neutrino masses and mixing from S4 flavor twisting
- Low-Mass Higgs Bosons in the NMSSM and Their LHC Implications
- θ^PMNS_13 = θ_C / \sqrt2 from GUTs
- Octahedral Symmetry with Geometrical Breaking: New Prediction for Neutrino Mixing Angle theta_{13} and CP Violation
- A SUSY SU(5)xT' Unified Model of Flavour with large θ_{13}
- A4xSU(5) SUSY GUT of Flavour with Trimaximal Neutrino Mixing
- E6 Models from F-theory
- Relatively Large Theta13 from Modification to the Tri-bimaximal, Bimaximal and Democratic Neutrino Mixing Matrices
- Natural NMSSM confronting with the LHC7-8
- A new relation between quark and lepton mixing matrices
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- Neutrino Mass and Mixing: from Theory to Experiment
- Flavor structures of charged fermions and massive neutrinos
- Unified Models of Neutrinos, Flavour and CP Violation
- A review of mu-tau flavor symmetry in neutrino physics
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- Trimaximal TM1 neutrino mixing in S4 with spontaneous CP violation
- Generalised CP and Trimaximal TM Lepton Mixing in Family Symmetry
- Generalised CP and Family Symmetry in Semi-Direct Models of Leptons
- Lepton Mixing Parameters from Family Symmetry and Generalised CP
- Generalised Geometrical CP Violation in a Lepton Flavour Model
- Minimal see-saw model predicting best fit lepton mixing angles
- Generalised CP and Family Symmetry
- Nonzero and Leptogenesis in a Type-I See-saw Model with Symmetry
- The minimal seesaw and leptogenesis models
- An SU(5) x A5 Golden Ratio Flavour Model
- Neutrino mass matrices with one texture zero and a vanishing neutrino mass
- Solving the Strong CP Problem with Discrete Symmetries and the Right Unitarity Triangle
- Muon g-2 and Dark Matter suggest Non-Universal Gaugino Masses: case study at the LHC
- Mu-tau symmetry and the Littlest Seesaw
- Towards realistic models of quark masses with geometrical CP violation
- Renormalisation Group Corrections to Neutrino Mass Sum Rules
- Minimal predictive see-saw model with normal neutrino mass hierarchy
- Models of Neutrino Mass, Mixing and CP Violation
- Muon anomalies and the Yukawa relations
- Quark-lepton Yukawa ratios and nucleon decay in SU(5) GUTs with type-III seesaw
- Nucleon decay in a minimal non-SUSY GUT with predicted quark-lepton Yukawa ratios
- Predictions from a flavour GUT model combined with a SUSY breaking sector
- Simiplified textures of the seesaw model for the trimaximal neutrino mixings
- Employing nucleon decay as a fingerprint of SUSY GUT models using \texttt{SusyTCProton}
- Yukawa ratio predictions in non-renormalizable GUT models
- Hybrid seesaw neutrino model in SUSY
- Leptogenesis, Fermion Masses and Mixings in a SUSY GUT with Flavor Symmetry
- Non-minimal flavour violation in SUSY GUTs with smuon assisted dark matter
- Leptogenesis in the basis
- Chiral perturbative analysis for an almost massless neutrino in the type-I seesaw mechanism
- -Scale Resonant Leptogenesis with New Scaling Ansatz on Neutrino Dirac Mass Matrix from Flavor Symmetry
- -Scale Resonant Leptogenesis with a scaling texture
- Non-Minimal Flavour Violation in SUSY GUTs
- Conditions of naturalness and fine-tunings for type-I seesaw mechanism with four-zero texture