Production of lepton-flavor-violating scalars through resonant positive-muon annihilation on atomic electrons
Jinhong Shen, Youpeng Wu, Zijian Wang, Leyun Gao, Qite Li, Chen Zhou, Qiang Li, Yu Xu, Xueheng Zhang, Liangwen Chen, He Zhao, Zhiyu Sun, Ruihu Zhu
Abstract
We investigate an invisible lepton-flavor-violating scalar ϕ with exclusive e-μ couplings and study its resonant production via μ+e-ϕ in fixed-target experiments. Since the effective center-of-mass energy is determined by the momentum of the initial-state bound electrons, atomic effects can significantly affect the resonance behavior. We therefore employ relativistic bound-state electron wave functions to calculate the production cross section and reveal a material-dependent broadening of the resonance lineshape. For the proposed HIAF experiment, fewer than one day of data taking (6×1010 MOT) can probe couplings at the 10-5 level at 90\% confidence level near resonance, demonstrating that high-intensity muon fixed-target experiments provide a powerful complementary probe of lepton-flavor violation.
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