We investigate the minimal U(1)Lμ−Lτ model with extra heavy vector-like leptons or charged scalars. By studying the kinetic mixing between U(1)Lμ−Lτ gauge boson Z′ and standard model photon, which is absent at tree level and will arise at one loop level due to μ, τ and new heavy charged leptons or scalars, the interesting behavior is shown. It can provide possibility for visible signatures of new heavy particles. We propose to search for Z′ at electron collider experiments, such as Belle II, BESIII and future Super Tau Charm Factory (STCF), using the monophoton final state. The parameter space of Z′ is probed, and scanned by its gauge coupling constant gZ′ and mass mZ′. We find that electron colliders have sensitivity to the previously unexplored parameter space for Z′ with MeV-GeV mass. Future STCF experiments with s=2−7 GeV can exclude the anomalous muon magnetic moment favored area when mZ′<5 GeV with the luminosity of 30 ab−1. For mZ′<2mμ, gZ′ can be down to 4.2×10−5 at 2 GeV STCF.
@article{arxiv.2012.10893,
title = {Probing the $L_\mu-L_\tau$ gauge boson at electron colliders},
author = {Yu Zhang and Zhuo Yu and Qiang Yang and Mao Song and Gang Li and Ran Ding},
journal= {arXiv preprint arXiv:2012.10893},
year = {2021}
}
Comments
12 pages, 10 figures. Accepted for publication in Physical Review D