Testing Exotic Electron-Electron Interactions with the Helium Ionization-Energy Anomaly
Abstract
Precision atomic spectroscopy provides a sensitive probe of physics beyond the Standard Model. A recently reported theory-experiment discrepancy in the ionization energy of metastable helium has motivated the hypothesis of a new boson mediating exotic electron-electron interactions. Using a model-independent sign-consistency analysis of the induced energy shifts, we show that the sign requirement alone excludes vector-vector and pseudoscalar-pseudoscalar interactions as possible explanations of the anomaly. Incorporating existing constraints together with improved limits obtained here further excludes axial-vector scenarios. Within the single-boson framework considered in this work, only a narrowly constrained scalar-mediated interaction remains viable. The remaining parameter space could be probed, for example, by modest improvements in the determination of the electron gyromagnetic ratio.
Cite
@article{arxiv.2602.09743,
title = {Testing Exotic Electron-Electron Interactions with the Helium Ionization-Energy Anomaly},
author = {Lei Cong and Filip Ficek and Rinat Abdullin and Mikhail G. Kozlov and Dmitry Budker},
journal= {arXiv preprint arXiv:2602.09743},
year = {2026}
}
Comments
5 pages, 3 figures