English

New physics in multi-electron muon decays

High Energy Physics - Phenomenology 2023-09-15 v2 High Energy Physics - Experiment

Abstract

We study the exotic muon decays with five charged tracks in the final state. First, we investigate the Standard Model rate for μ+3e+2e2ν\mu^+ \to 3e^+\,2e^-\,2\nu (B=4.0×1010)B = 4.0\times 10^{-10}) and find that the Mu3e experiment should have tens to hundreds of signal events per 101510^{15} μ+\mu^+ decays, depending on the signal selection strategy. We then turn to a neutrinoless μ+3e+2e\mu^+ \to 3e^+\,2e^- decay that may arise in new-physics models with lepton-flavor-violating effective operators involving a dark Higgs hdh_d. Following its production in μ+e+hd\mu^+ \to e^+ h_d decays, the dark Higgs can undergo a decay cascade to two e+ee^+e^- pairs through two dark photons, hdγdγd2(e+e)h_d \to \gamma_d \gamma_d \to 2(e^+e^-). We show that a μ+3e+2e\mu^+ \to 3e^+\,2e^- search at the Mu3e experiment, with potential sensitivity to the branching ratio at the O(1012)O(10^{-12}) level or below, can explore new regions of parameter space and new physics scales as high as Λ1015\Lambda \sim 10^{15} GeV.

Keywords

Cite

@article{arxiv.2306.15631,
  title  = {New physics in multi-electron muon decays},
  author = {Matheus Hostert and Tony Menzo and Maxim Pospelov and Jure Zupan},
  journal= {arXiv preprint arXiv:2306.15631},
  year   = {2023}
}

Comments

22 pages, 7 figures, version accepted for publication in JHEP

R2 v1 2026-06-28T11:15:55.050Z