English

Explaining the MiniBooNE Anomalous Excess via Leptophilic ALP-Sterile Neutrino Coupling

High Energy Physics - Phenomenology 2021-08-04 v2

Abstract

Recently, the MiniBooNE experiment at Fermilab has updated the results with increased data and reported an excess of 560.6±119.6560.6 \pm 119.6 electronlike events (4.7σ4.7\sigma) in the neutrino operation mode. In this paper, we propose a scenario to account for the excess where a Dirac-type sterile neutrino, produced by a charged kaon decay through the neutrino mixing, decays into a leptophilic axionlike particle (\ellALP) and a muon neutrino. The electron-positron pairs produced from the \ellALP decays can be interpreted as electronlike events provided that their opening angle is sufficiently small. In our framework, we consider the \ellALP with a mass ma=20MeVm^{}_a = 20\,\text{MeV} and an inverse decay constant ce/fa=102GeV1c^{}_e/f^{}_a = 10^{-2}\,\text{GeV}^{-1}, allowed by the astrophysical and experimental constraints. Then, after integrating the predicted angular or visible energy spectra of the \ellALP to obtain the total excess event number, we find that our scenario with sterile neutrino masses within 150MeVmN380MeV150\,\text{MeV}\lesssim m^{}_N \lesssim 380 \,\text{MeV} (150MeVmN180MeV150\,\text{MeV}\lesssim m^{}_N \lesssim 180 \,\text{MeV}) and neutrino mixing parameters between 1010Uμ4210810^{-10} \lesssim |U_{\mu 4}|^2 \lesssim 10^{-8} (3×107Uμ428×1073\times 10^{-7} \lesssim |U_{\mu 4}|^2 \lesssim 8 \times10^{-7}) can explain the MiniBooNE data.

Keywords

Cite

@article{arxiv.2102.05012,
  title  = {Explaining the MiniBooNE Anomalous Excess via Leptophilic ALP-Sterile Neutrino Coupling},
  author = {Chia-Hung Vincent Chang and Chuan-Ren Chen and Shu-Yu Ho and Shih-Yen Tseng},
  journal= {arXiv preprint arXiv:2102.05012},
  year   = {2021}
}

Comments

19+1 pages, 8+1 figures, and 1 table; v2: Typos fixed, figure added, note added, references added, matched to the published version