Collinear Laser Spectroscopy of 2\,3\!S1 → 2\,3\!P\!J transitions in helium-like 12C4+

Abstract

Transition frequencies and fine-structure splittings of the 2\,3\!S1 → 2\,3\!P\!J transitions in helium-like 12C4+ were measured by collinear laser spectroscopy on a 1-ppb level. Accuracy is increased by more than three orders of magnitude with respect to previous measurements, enabling tests of recent non-relativistic QED calculations including terms up to mα7. Deviations between the theoretical and experimental values are within theoretical uncertainties and are ascribed to mα8 and higher-order contributions in the series expansion of the NR-QED calculations. Finally, prospects for an all-optical charge radius determination of light isotopes are evaluated.

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