Search for lepton-flavor-violating ALPs at a future muon collider and utilization of polarization-induced effects
arXiv:2106.00505 · doi:10.1016/j.nuclphysb.2022.115827
Abstract
Axion-Like Particles (ALPs) are pseudo Nambu-Goldstone bosons associated with spontaneously broken global symmetries. Such particles can have lepton-flavor-violating (LFV) couplings to the SM charged leptons. LFV ALPs provide the possibility to address some of the SM long-lasting problems. We investigate the sensitivity of a future muon collider suggested by the Muon Accelerator Program (MAP) to the production of LFV ALPs in the ALP mass range MeV. ALPs are assumed to be produced through the LFV decay $τ\ra\ell a$ () of one of the tau leptons produced in the muon-anti muon annihilation. Performing a realistic detector simulation and deploying a multivariate technique, we constrain the LFV couplings and for both the cases of unpolarized and polarized muon beams. Three different chiral structures are considered for the LFV ALP coupling and the muon collider is assumed to operate at the center-of-mass energies of 126, 350 and 1500 GeV. We present a procedure to search for LFV ALPs at colliders which takes advantage of tau polarization-induced effects. Polarized tau leptons which produce such effects can be produced when the initial muon beams are polarized. Utilizing the properties of polarized tau decays, the main SM background which overwhelms the ALP production in the case of unpolarized muon beams can be significantly suppressed. We present 95 CL expected limits on the LFV couplings and show that the present analysis can improve current experimental limits on the ALP LFV couplings by roughly one order of magnitude.
31 pages, 11 figures
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- Probing a light dark sector at future lepton colliders via invisible decays of the SM-like and dark Higgs bosons
- Light Axion-Like Particles at Future Lepton Colliders
- Exploring Axion-Like Particle Couplings through Single Top -Channel and Top Pair Production at the LHC
- Concurrent Exploration of Axion-Like Particle Interactions with Gauge Bosons at the LHC
- Neutron stars can shine a light on elusive lepton-flavor-violating dark matter
- Probing charged lepton flavor violation with axion-like particles at Belle II