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Wigner-like Parametrization of Canonical Seesaw Models

High Energy Physics - Phenomenology 2025-02-12 v1 High Energy Physics - Experiment

Abstract

In this paper, we introduce the Wigner parametrization of unitary matrices and then apply it to the full description of canonical seesaw models, which extend the Standard Model with three right-handed neutrino singlets and account simultaneously for tiny Majorana neutrino masses and the baryon number asymmetry in the Universe. In the Wigner parametrization, the strong hierarchy between the electroweak scale ΛEW102 GeV\Lambda^{}_{\rm EW} \approx 10^2~{\rm GeV} and the seesaw scale ΛSS1014 GeV\Lambda^{}_{\rm SS} \approx 10^{14}~{\rm GeV} is generally captured by three small rotation angles {ϑ1,ϑ2,ϑ3}O(ΛEW/ΛSS)\{\vartheta^{}_1, \vartheta^{}_2, \vartheta^{}_3\} \approx {\cal O}(\Lambda^{}_{\rm EW}/\Lambda^{}_{\rm SS}), and all the remaining parameters reside in four 3×33\times 3 unitary matrices. The connection between the Wigner parametrization and those in the literature is also established.

Keywords

Cite

@article{arxiv.2502.07301,
  title  = {Wigner-like Parametrization of Canonical Seesaw Models},
  author = {Shun Zhou},
  journal= {arXiv preprint arXiv:2502.07301},
  year   = {2025}
}

Comments

14 pages, no figures