English

A Bayesian Approach for Strong Field QED Tests with He-like Ions

Atomic Physics 2025-08-12 v5

Abstract

Detailed comparisons between theory and experiment for quantum electrodynamics (QED) effects in He-like ions have been performed in the literature to search for hints of new physics. Different frequentist statistical analyses of the existing atomic transition energy data have shown contradictory conclusions as to the presence of possible deviations from the theory predictions. We present here an approach using Bayesian statistics which allows to assign quantitative probabilities to the different deviation models from theory for He-like ions for Z=5Z = 5 to 92. Potential deviations beyond the standard model or higher order QED effects are modeled with f(Z)Zkf(Z) \propto Z^k functions. Considering the currently available data, no significant difference between theory and experiment is found, and we show that recent experiments have reduced the possible deviations previously observed in the literature. Using past measurements and a weighted average on the different deviation models, we indicate the accuracy required for future measurements to investigated possible divergences.

Keywords

Cite

@article{arxiv.2501.04423,
  title  = {A Bayesian Approach for Strong Field QED Tests with He-like Ions},
  author = {César Godinho and Jorge Machado and Nancy Paul and Mauro Guerra and Paul Indelicato and Martino Trassinelli},
  journal= {arXiv preprint arXiv:2501.04423},
  year   = {2025}
}

Comments

Document containing 6 pages and 3 figures

R2 v1 2026-06-28T20:59:43.620Z