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QED tests with highly-charged ions

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arxiv 1909.06274 v1 pith:A6WIRWNE submitted 2019-09-13 physics.atom-ph

classification physics.atom-ph
keywords energiesionspresentedtransitioncalculationscorrectionfew-electronmethods
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abstract

The current status of bound state quantum electrodynamics calculations of transition energies for few-electron ions is reviewed. Evaluation of one and two body QED correction is presented, as well as methods to evaluate many-body effects that cannot beevaluated with present-day QED calculations. Experimental methods, their evolution over time, as well as progress in accuracy are presented. A detailed, quantitative, comparison between theory and experiment is presented for transition energies in few-electron ions. In particular the impact of the nuclear size correction on the quality of QED tests as a function of the atomic number is discussed.The cases of hyperfine transition energies and of bound-electron Land{\'e} $g$-factor are also considered.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Testing Antimatter Couplings with Spectroscopy

    hep-ph 2026-08 conditional novelty 7.0 of 10

    Using hydrogen, antihydrogen, and highly charged ion spectroscopy, the paper derives velocity-enhanced sensitivity to 'antimatter' couplings of a Lorentz-violating scalar and sets the strongest direct bounds for masse...

  2. High precision X-ray spectroscopy of kaonic neon

    nucl-ex 2024-12 conditional novelty 7.0 of 10

    First measurement of kaonic neon X-ray transition energies and yields, with sub-eV statistical precision on three lines, obtained with the SIDDHARTA-2 apparatus at DAΦNE.

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