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Perturbativity in the seesaw mechanism

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arxiv 1509.02678 v3 pith:355DRHPH submitted 2015-09-09 hep-ph hep-ex

classification hep-phhep-ex
keywords neutrinosheavierlightestright-handedenergymassmechanismneutrino
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We consider the Standard Model extended by right-handed neutrinos to explain massive neutrinos through the seesaw mechanism. The new fermion can be observed when it has a sufficiently small mass and large mixings to left-handed neutrinos. If such a particle is the lightest right-handed neutrino, its contribution to the mass matrix of active neutrinos needs to be canceled by that of a heavier one. Yukawa couplings of the heavier one are then larger than those of the lightest one. We show that the perturbativity condition gives a severe upper bound on the mixing of the lightest right-handed neutrino, depending on the masses of heavier ones. Models of high energy phenomena, such as leptogenesis, can be constrained by low energy experiments.

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  1. A frequentist analysis of three right-handed neutrinos with GAMBIT

    hep-ph 2019-08 conditional novelty 7.0 of 10

    A comprehensive frequentist global fit maps the currently allowed mass and mixing space for three right-handed neutrinos between 60 MeV and 500 GeV and finds no significant new physics.

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