arXiv:2608.02740·v1·High Energy Physics — Phenomenology
Flavor-violating dark matter at MEG-II and Mu3e
Daniele Barducci🇮🇹 · Giulio Marino🇮🇹 · Paolo Panci🇮🇹 · Robert Ziegler🇩🇪
Abstract
We investigate the potential of high-intensity muon experiments such as MEG~II and Mu3e to uncover dark matter (DM) through the lepton-flavor-violating decay . We describe the underlying interactions in terms of dimension-six four-fermion operators and systematically explore all allowed Lorentz structures. We show that precision measurements of the Michel spectrum can probe new-physics scales of for DM masses above approximately . For lighter DM, whose signal is confined close to the Michel endpoint, the radiative decay at MEG~II opens a complementary window, with sensitivity comparable to and, in some regions, stronger than that of the non-radiative channel. Remarkably, for reheating temperatures below the tens-of-MeV scale but above the BBN bound, MEG~II and Mu3e can probe regions in which freeze-in through the very same LFV interactions accounts for the observed DM abundance.
Comments: 43 Pages, 9 Figures