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Wigner-like Parametrization of Canonical Seesaw Models

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arxiv 2502.07301 v1 pith:46DGRVIC submitted 2025-02-11 hep-ph hep-ex

Wigner-like Parametrization of Canonical Seesaw Models

classification hep-ph hep-ex
keywords lambdaparametrizationapproxseesawvarthetawignercanonicalmatrices
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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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 $\Lambda^{}_{\rm EW} \approx 10^2~{\rm GeV}$ and the seesaw scale $\Lambda^{}_{\rm SS} \approx 10^{14}~{\rm GeV}$ is generally captured by three small rotation angles $\{\vartheta^{}_1, \vartheta^{}_2, \vartheta^{}_3\} \approx {\cal O}(\Lambda^{}_{\rm EW}/\Lambda^{}_{\rm SS})$, and all the remaining parameters reside in four $3\times 3$ unitary matrices. The connection between the Wigner parametrization and those in the literature is also established.

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