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Tri-Bimaximal Lepton Mixing and Leptogenesis

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arxiv 0908.0907 v2 pith:4HZ7YVVC submitted 2009-08-06 hep-ph

Tri-Bimaximal Lepton Mixing and Leptogenesis

classification hep-ph
keywords tri-bimaximalleptogenesismixingasymmetryparameterscp-violatingexactflavour
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In models with flavour symmetries added to the gauge group of the Standard Model the CP-violating asymmetry necessary for leptogenesis may be related with low-energy parameters. A particular case of interest is when the flavour symmetry produces exact Tri-Bimaximal lepton mixing leading to a vanishing CP-violating asymmetry. In this paper we present a model-independent discussion that confirms this always occurs for unflavoured leptogenesis in type I see-saw scenarios, noting however that Tri-Bimaximal mixing does not imply a vanishing asymmetry in general scenarios where there is interplay between type I and other see-saws. We also consider a specific model where the exact Tri-Bimaximal mixing is lifted by corrections that can be parametrised by a small number of degrees of freedom and analyse in detail the existing link between low and high-energy parameters - focusing on how the deviations from Tri-Bimaximal are connected to the parameters governing leptogenesis.

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  1. Exact constraints on family-separated seesaw relations and their phenomenological consequences

    hep-ph 2026-07 conditional novelty 6.0

    Under exact family-separated seesaw alignment, the neutrino Yukawa columns are exactly orthogonal and all standard nonresonant one-loop decay asymmetries vanish, invalidating the proposed CP-asymmetry correlation.