English

Exact parametrization of a minimal seesaw model

High Energy Physics - Phenomenology 2025-12-23 v2

Abstract

We propose a parametrization of neutrino masses and mixing in the minimal seesaw model (MSM). The MSM, which introduces two heavy sterile neutrinos, is the minimal extension of the Standard Model in addressing the tiny masses of active neutrinos. The parametrization includes 11 free parameters: 6 neutrino oscillation parameters (2 mass-squared differences Δm212\Delta m^2_{21}, Δm312\Delta m^2_{31}, 3 mixing angles θ12\theta_{12}, θ13\theta_{13}, θ23\theta_{23}, and 1 Dirac phase δCP\delta_{\rm CP}), 1 mass parameter in 0ν2β0\nu2\beta decay meem_{ee}, and 4 additional parameters: 2 heavy neutrino masses M1M_1 and M2M_2, 1 active-sterile mixing angle θ14\theta_{14} and 1 CP-violating phase δ14\delta_{14}. This parametrization is derived exactly from the most general neutrino mass matrix in the MSM without any approximation. We further discuss its implications in phenomenological studies.

Keywords

Cite

@article{arxiv.2505.04279,
  title  = {Exact parametrization of a minimal seesaw model},
  author = {Zi-Qiang Chen and Xi-He Hu and Ye-Ling Zhou},
  journal= {arXiv preprint arXiv:2505.04279},
  year   = {2025}
}

Comments

27 pages, 4 figures and 5 tables, discussions added, data included in source files, to be published in PRD