English

Exploring muonphilic ALPs at muon colliders

High Energy Physics - Phenomenology 2023-07-04 v3 High Energy Physics - Experiment

Abstract

Axion-like particles (ALPs) are new particles that extend beyond the standard model (SM) and are highly motivated. When considering ALPs within an effective field theory framework, their couplings with SM particles can be studied independently. It is a daunting task to search for GeV-scale ALPs coupled to muons in collider experiments because their coupling is proportional to the muon mass. However, a recent study by Altmannshofer, Dror, and Gori (2022) highlighted the importance of a four-point interaction, WW-μ\mu-νμ\nu_{\mu}-aa, as well as interactions from the chiral anomaly which couplings are not dependent on the muon mass. These interactions provide a new opportunity to explore muonphilic ALPs (μ\muALPs) at the GeV scale. We have explored various μ\muALPs production channels at muon colliders with μ\muALPs decaying into a pair of muons. Especially, we found a pair of neutrinos accompanied by a μ\muALP is a most effective channel to search for μ\muALPs in the electrowek violating (EWV) scenario. In contract, a photon plus a μ\muALP becomes a better channel to search for μ\muALPs in the electroweak preserving (EWP) scenario because there is no WW-μ\mu-νμ\nu_{\mu}-aa interaction in this situation. Most importantly, we found that the future bounds for μ\muALPs in EWV scenario are much stronger than the ones in EWP scenario and the existing bounds for exploring μ\muALPs with 11 GeV maMW\leq m_a\lesssim M_W.

Keywords

Cite

@article{arxiv.2303.03110,
  title  = {Exploring muonphilic ALPs at muon colliders},
  author = {Chih-Ting Lu and Xiaoyi Luo and Xinqi Wei},
  journal= {arXiv preprint arXiv:2303.03110},
  year   = {2023}
}

Comments

37 pages, 12 figures, 10 tables; To be published in Chinese Physics C

R2 v1 2026-06-28T09:03:20.477Z