Muon g-2 from Millicharged Hidden Confining Sector
Abstract
We provide a novel explanation to the muon excess with new physics contributions at the two-loop level. In this scenario, light millicharged particles are introduced to modify the photon vacuum polarization that contributes to muon at one additional loop. The muon excess can be explained with the millicharged particle mass around 10 MeV and the product of the multiplicity factor and millicharge squared of . The minimal model faces severe constraints from direct searches at fixed-target experiments and astrophysical observables. However, if the millicharged particles are also charged under a hidden confining gauge group with a confinement scale of MeV, hidden-sector hadrons are unstable and can decay into neutrinos, which makes this scenario consistent with existing constraints. This explanation can be well tested at low-energy lepton colliders such as BESIII and Belle II as well as other proposed fixed-target experiments.
Keywords
Cite
@article{arxiv.2106.15626,
title = {Muon g-2 from Millicharged Hidden Confining Sector},
author = {Yang Bai and Seung J. Lee and Minho Son and Fang Ye},
journal= {arXiv preprint arXiv:2106.15626},
year = {2021}
}
Comments
19 pages, 5 figures, journal version for JHEP