English

Updated E141 constraints on a long-lived $X_{17}$ vector boson

High Energy Physics - Phenomenology 2026-07-24 v1 High Energy Physics - Experiment

Abstract

Since its first observation by the ATOMKI experiment in 2018, the Be\rm ^*Be anomaly has attracted considerable interest within the dark sector community as it may indicate the existence of a new fundamental particle with a mass of about 16.9 MeV, the X17X_{17}. However, the minimal model describing X17X_{17} as a new vector boson is severely constrained by null results from legacy beam-dump experiments. Among these, the E141 experiment at SLAC places stringent limits on the X17X_{17} coupling to electrons εe\varepsilon_e in the 5.1×105εe1.7×1045.1\times10^{-5}\lesssim \varepsilon_e\lesssim1.7\times10^{-4} region. This excludes the possibility of a long-lived X17X_{17}, potentially in contrast with the preliminary estimate of the particle lifetime recently reported by the ATOMKI collaboration. The E141 limits commonly adopted in the literature rely on reinterpretations of the original analysis under solid but simplifying assumptions. While these studies provide a reliable estimate of the experiment's reach, they rely on approximations that were well justified when the boson mass was largely unconstrained. With the X17X_{17} mass now confined to a narrow region by recent experimental observations, a more refined treatment of the E141 sensitivity becomes necessary. In this work, we revisit the E141 exclusion limits in the X17X_{17} scenario by performing a dedicated reanalysis that incorporates a more accurate treatment of the experimental setup and signal prediction. We quantify the impact of these refinements on the excluded parameter space and discuss their implications for the compatibility between the E141 constraints and the vector boson interpretation of the ATOMKI anomalies.

Cite

@article{arxiv.2607.22102,
  title  = {Updated E141 constraints on a long-lived $X_{17}$ vector boson},
  author = {A. Celentano and A. Marini and L. Marsicano},
  journal= {arXiv preprint arXiv:2607.22102},
  year   = {2026}
}

Comments

12 pages, 8 figures