arXiv:2105.05866·v2·High Energy Physics — Phenomenology
Searching for Flavor-Violating ALPs in Higgs Decays
Hooman Davoudiasl🇺🇸 · Roman Marcarelli🇺🇸 · Nicholas Miesch🇺🇸 · Ethan T. Neil🇺🇸
Abstract
Pseudo-scalar particles, often referred to as axion-like-particles (ALPs), arise in a variety of theoretical contexts. The phenomenology of such states is typically studied assuming flavor-conserving interactions, yet they can in principle have flavor-violating (FV) couplings to fermions. We consider this general possibility, focusing on models where the ALP has non-negligible coupling to the Standard Model Higgs boson . For a lepton FV ALP of mass GeV, , where is a charged lepton, could have branching fraction, leading to potentially detectable at the LHC and its future program. We examine this possibility, in light of existing bounds on FV processes, in a general effective theory. We obtain constraints on the effective couplings from both prompt and long-lifetime searches at the LHC; some projections for envisioned measurements are also provided. The implications of the recently announced first results of the muon measurement at Fermilab for the ALP interactions considered in our work are also briefly discussed.
Comments: 26 pages, 10 figures. v2: updated to published version