Innes Bigaran, Patrick J. Fox, Yann Gouttenoire, Roni Harnik, Gordan Krnjaic, Tony Menzo, Jure Zupan
We propose a dark matter direct-detection strategy using charged particle decays at accelerator-based experiments. If ultralight (m_{ϕ}≪eV) dark matter has a misalignment abundance, its local field oscillates in time at a frequency set by its mass. If it also couples to flavor-changing neutral currents, rare exotic decays such as μ→eϕ^{'} and τ→e(μ)ϕ^{'} inherit this modulation. Focusing on such charged lepton flavor-violating decays, we show that sufficient event samples can enable detection of ultralight dark matter candidates at Mu3e, Belle-II, and FCC-ee.