English

Precision Test of Many-Body QED in the Be$^+$ $2p$ Fine Structure Doublet Using Short-Lived Isotopes

Atomic Physics 2015-07-15 v1

Abstract

Absolute transition frequencies of the 2s  2S1/22p  2P1/2,3/22s\; ^2{\rm S}_{1/2} \rightarrow 2p\;^2\mathrm{P}_{1/2,3/2} transitions in Be+^+ were measured for the isotopes 7,912^{7,9-12}Be. The fine structure splitting of the 2p2p state and its isotope dependence are extracted and compared to results of \textit{ab initio} calculations using explicitly correlated basis functions, including relativistic and quantum electrodynamics effects at the order of mα6m \alpha^6 and mα7lnαm \alpha^7 \ln \alpha. Accuracy has been improved in both the theory and experiment by 2 orders of magnitude, and good agreement is observed. This represents one of the most accurate tests of quantum electrodynamics for many-electron systems, being insensitive to nuclear uncertainties.

Keywords

Cite

@article{arxiv.1507.03830,
  title  = {Precision Test of Many-Body QED in the Be$^+$ $2p$ Fine Structure Doublet Using Short-Lived Isotopes},
  author = {Wilfried Nörtershäuser and Christopher Geppert and Andreas Krieger and Krzysztof Pachucki and Mariusz Puchalski and Klaus Blaum and Mark L. Bissell and Nadja Frömmgen and Michael Hammen and Magdalena Kowalska and Jörg Krämer and Kim Kreim and Rainer Neugart and Gerda Neyens and Rodolfo Sánchez and Deyan T. Yordanov},
  journal= {arXiv preprint arXiv:1507.03830},
  year   = {2015}
}

Comments

5 pages, 2 figures