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Running of Radiative Neutrino Masses: The Scotogenic Model

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arxiv 1205.0008 v1 pith:JYTDLSVF submitted 2012-04-30 hep-ph

Running of Radiative Neutrino Masses: The Scotogenic Model

classification hep-ph
keywords modelneutrinomassrunningequationsscotogenicalteredcompared
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the renormalization group equations of Ma's scotogenic model, which generates an active neutrino mass at 1-loop level. In addition to other benefits, the main advantage of the mechanism exploited in this model is to lead to a natural loop-suppression of the neutrino mass, and therefore to an explanation for its smallness. However, since the structure of the neutrino mass matrix is altered compared to the ordinary type I seesaw case, the corresponding running is altered as well. We have derived the full set of renormalization group equations for the scotogenic model which, to our knowledge, had not been presented previously in the literature. This set of equations reflects some interesting structural properties of the model, and it is an illustrative example for how the running of neutrino parameters in radiative models is modified compared to models with tree-level mass generation. We also study a simplified numerical example to illustrate some general tendencies of the running. Interestingly, the structure of the RGEs can be exploited such that a bimaximal leptonic mixing pattern at the high-energy scale is translated into a valid mixing pattern at low energies, featuring a large value of \theta_{13}. This suggests very interesting connections to flavour symmetries.

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  1. Running of neutrino mass parameters in the Zee model

    hep-ph 2025-12 conditional novelty 6.0

    In the Zee model, one-loop EFT running—not direct matching—generates the neutrino mass matrix, and 1% variations in fitted high-scale couplings shift neutrino observables beyond next-generation experimental precision.