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Electroweak naturalness in three-flavour Type I see-saw and implications for leptogenesis

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arxiv 1502.01352 v2 pith:EF3OVASY submitted 2015-02-04 hep-ph

classification hep-ph
keywords see-sawtypelesssimmodelnaturalnessneutrinotimesbound
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abstract

In the Type I see-saw model, the naturalness requirement that corrections to the electroweak $\mu$ parameter not exceed 1 TeV results in a rough bound on the lightest right-handed neutrino mass, $M_{N_1}\lesssim 3\times 10^7$ GeV. In this letter we derive generic bounds applicable in any three-flavour Type I see-saw model. We find $M_{N_1}\lesssim 4\times 10^7$ GeV and $M_{N_2}\lesssim 7\times 10^7$ GeV. In the limit of one massless neutrino, there is no naturalness bound on $M_{N_3}$ in the Poincare protected decoupling limit. Our results confirm that no Type I see-saw model can explain the observed neutrino masses and baryogenesis via hierarchical ($N_1$-, $N_2$-, or $N_3$-dominated) thermal leptogenesis while remaining completely natural.

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  1. A geometric origin for the radiative neutrino portal to secluded dark matter

    hep-ph 2026-07 conditional novelty 5.0 of 10

    A brane-separated fifth dimension gives a geometric origin for the vanishing tree-level Higgs-hidden-scalar portal, leaving seesaw neutrinos to generate a small radiative portal that makes secluded dark matter viable ...

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