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Neutrino masses in the Standard Model effective field theory

Published 16 Apr 2021 in hep-ph | (2104.08248v2)

Abstract: We compute the leading-logarithmic correction to the neutrino mass matrix in the Standard Model effective field theory (SMEFT) to dimension seven. In the limit of negligible lepton and down-type quark Yukawa couplings, it receives contributions from the Weinberg dimension-five operator as well as from 11 dimension-six and five dimension-seven independent interactions. Two of the main implications we derive from this result are the following. First, we find dimension-seven operators which, despite violating lepton number, do not renormalise neutrino masses at one loop. And second, we demonstrate that the presence of dimension-six operators around the TeV scale can modify the Standard Model prediction by up to O(50 %)\mathcal{O}(50\,\%). Our result comprises also one step forward towards the renormalisation of the SMEFT to order v<sup>3/Λ<sup>3v<sup>3/\Lambda<sup>3.

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