arXiv:2605.24713·v2·High Energy Physics — Phenomenology
Axion-like particles and sterile neutrinos solve the and puzzles
Bhubanjyoti Bhattacharya🇺🇸 · Alakabha Datta🇺🇸 · Girish Kumar🇺🇸 · Danny Marfatia🇺🇸
Abstract
The recent measurement of the branching ratio of (where ``inv'' denotes invisible states) by the Belle II collaboration is enhanced relative to the standard model expectation by 2.7. An older puzzle persists in measurements of the branching ratios and CP asymmetries of decays. We address these two anomalies in flavor-changing neutral current decays, with a short-lived axion-like particle (ALP) with mass close to that of the . In the model with the minimum number of new couplings, the ALP has couplings to the photon, top quark and a heavy sterile neutrino. The ALP contributes to the decays by mixing with the . It contributes to by its off-shell coupling to sterile neutrino pairs. The model can explain the excess in the total rate, but not the observed distribution of signal events. We make predictions for all modes and for the rare kaon decays, and . We find an appreciable contribution to the magnetic moment of the muon, and negligible contributions to the magnetic moment of the electron and .
Comments: 9 pages, 3 figures, 3 tables. Version to appear in PRD