arXiv:2211.01616·v1·High Energy Physics — Phenomenology
Towards identifying the minimal flavor symmetry behind neutrino oscillations
Abstract
Current neutrino oscillation data indicate that the Pontecorvo-Maki-Nakagawa-Sakata matrix exhibits a - flavor interchange symmetry (for ) as a good approximation. In particular, the T2K measurement implies that the maximal neutrino mixing angle and the CP-violating phase should be close to and , respectively. Behind these observations lies a minimal flavor symmetry -- - the effective Majorana neutrino mass term keeps invariant under the transformations , and . Extending this flavor symmetry to the canonical seesaw mechanism, we find that the -matrix describing the strength of weak charged-current interactions of heavy Majorana neutrinos satisfies as a consequence of . This result can be used to set a new upper bound, which is about three orders of magnitude more stringent than before, on the flavor mixing factor associated with the charged-lepton-flavor-violating decay mode .
Comments: 6 pages, 2 figures. Contribution to ICHEP2022