arXiv:2509.13363·v2·High Energy Physics — Phenomenology
-Orthogonal Freedom in the Canonical Seesaw: Flavor Invariants and Physical Non-Equivalence of F-Classes
Abstract
We study basis-independent structures in the Type-I seesaw mechanism for light Majorana neutrinos, assuming the canonical scenario with three heavy right-handed (sterile) neutrinos. Let denote the mass matrix of light neutrinos, obtained at tree level from heavy Majorana singlets with diagonal mass matrix and Dirac matrix . We show that all right-actions on the seesaw matrix that leave unchanged form the group . While oscillation data determine the PMNS matrix and the mass-squared splittings, they do not fix the -class within . We classify basis-invariant quantities into those that are class-blind (e.g.\ ) and class-sensitive (e.g. , , an alignment measure, and CP-odd traces relevant to leptogenesis), where denotes the non-unitarity matrix of the light sector. We provide explicit formulas and both high-scale and GeV-scale benchmark examples that illustrate these invariant fingerprints and their scaling with . This converts the degeneracy at fixed into measurable, basis-invariant fingerprints.
Comments: 20 Pages, 0 figure. This manuscript has been submitted to Universe (MDPI) as an invited contribution. This work was presented as an invited talk at the 22nd Lomonosov Conference on Elementary Particle Physics