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Seesaw parametrization for n right-handed neutrinos
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Introducing n right-handed neutrinos to the Standard Model yields, in general, massive active neutrinos. We give explicit parametrizations for the involved mixing and coupling matrices in terms of physical parameters for both the top-down and the bottom-up approach for arbitrary n. Bounds on the complex mixing angles in the bottom-up approach from perturbativity of the Yukawa couplings to charged lepton flavor violation are discussed. As a novel illustration of possible effects from n != 3, we extend the neutrino anarchy framework to arbitrary n; we show that while the anarchic mixing angles are insensitive to the number of singlets, the observed ratios of neutrino masses prefer small n for the simplest linear measure.
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Revisiting the connection of baryon number, lepton number, and operator dimension
An improved inequality with a correction from Weinberg's F parity gives the minimum operator dimension for each baryon and lepton number combination, and it is shown to be an equality in the νSMEFT up to dimension 25.
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