English

The Neutrino Option

High Energy Physics - Phenomenology 2019-04-30 v2

Abstract

The Neutrino Option is a scenario where the Higgs mass is generated at the same time as neutrino masses in the type-I seesaw model. This framework provides a dynamical origin for the scalar potential of the Standard Model and suggests a new approach to the hierarchy problem. Here we review the preliminary analysis of Ref. [1], that showed the viability of this scenario, as well as the improved study of Ref. [2], that led to a better identification of the region of the parameter space where the Neutrino Option can be realized. We find that experimental constraints from both Higgs and neutrino physics can be accommodated introducing 2 heavy Majorana neutrinos with mass M1M20.510M_1\simeq M_2\sim 0.5 - 10 PeV and Yukawa couplings to the lepton doublet of order 104102 10^{-4}-10^{-2}, assuming that at the scale MM the classical Higgs potential is approximately conformal, with a quartic Higgs coupling λ00.010.05\lambda_0\sim 0.01-0.05. Specifying the light neutrino mass ordering, the ratio M2/M1M_2/M_1 or a given value of the top quark mass identifies narrower ranges for all the parameters. Although no further signature of the Neutrino Option is generally predicted at the currently accessible energy scales, conformal UV completions have been proposed, that could be tested e.g. via detection of gravitational waves. Leptogenesis can also be successfully realized in this scenario, that intriguingly ties together the breaking of the conformal and electroweak symmetries with the violation of lepton number.

Keywords

Cite

@article{arxiv.1904.07029,
  title  = {The Neutrino Option},
  author = {Ilaria Brivio},
  journal= {arXiv preprint arXiv:1904.07029},
  year   = {2019}
}

Comments

Talk presented at NuPhys2018 (London, 19-21 December 2018). 8 pages, LaTeX, 5 pdf figures. typos and equations corrected

R2 v1 2026-06-23T08:39:46.067Z