New physics in multi-electron muon decays
Abstract
We study the exotic muon decays with five charged tracks in the final state. First, we investigate the Standard Model rate for ( and find that the Mu3e experiment should have tens to hundreds of signal events per decays, depending on the signal selection strategy. We then turn to a neutrinoless decay that may arise in new-physics models with lepton-flavor-violating effective operators involving a dark Higgs . Following its production in decays, the dark Higgs can undergo a decay cascade to two pairs through two dark photons, . We show that a search at the Mu3e experiment, with potential sensitivity to the branching ratio at the level or below, can explore new regions of parameter space and new physics scales as high as GeV.
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