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Underlying A₄ Symmetry for the Neutrino Mass Matrix and the Quark Mixing Matrix
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Underlying A₄ Symmetry for the Neutrino Mass Matrix and the Quark Mixing Matrix
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The discrete non-Abelian symmetry $A_4$, valid at some high-energy scale, naturally leads to degenerate neutrino masses, without spoiling the hierarchy of charged-lepton masses. Realistic neutrino mass splittings and mixing angles (one of which is necessarily maximal and the other large) are then induced radiatively in the context of softly broken supersymmetry. The quark mixing matrix is also calculable in a similar way. The mixing parameter $U_{e3}$ is predicted to be imaginary, leading to maximal CP violation in neutrino oscillations. Neutrinoless double beta decay and $\tau \to \mu \gamma$ should be in the experimentally accessible range.
Forward citations
Cited by 2 Pith papers
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Exact Phenomenology of the Neutrino Cuboid: Normal Mass Ordering, the Tribimaximal Limit, and Cosmological Constraints
Under the exact cuboid alignment ξ=θ12 and ζ=θ23, the measured solar angle and mass splittings force normal ordering, the lower atmospheric octant, and a mass sum near 0.29–0.33 eV.
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Fate of $\theta_{12}$ under $\mu-\tau$ Reflection Symmetry in Light of the First JUNO Results
A model with μ-τ reflection symmetry from A4 predicts sin²θ12 ≳ 0.335 which is disfavored by JUNO results, leaving a surviving scenario with testable correlations to model parameters.
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