Abstract
The energy levels of hydrogen-like atomic systems are shifted slightly by the complex structure of the nucleus, in particular by the finite size of the nucleus. These energy shifts are vastly magnified in muonic atoms and ions, i.e. the hydrogen-like systems formed by a negative muon and a nucleus. By measuring the 2S-2P energy splitting in muonic hydrogen, muonic deuterium and muonic helium, we have been able to deduce the p, d, ^3 3 He and ^4 4 He nuclear charge radii to an unprecedented accuracy. These radii provide benchmarks for hadron and nuclear theories, lead to precision tests of bound-state QED in regular atoms and to a better determination of the Rydberg constant.
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CITATION STYLE
Antognini, A., Kottmann, F., & Pohl, R. (2021). Laser spectroscopy of light muonic atoms and the nuclear charge radii. SciPost Physics Proceedings, (5). https://doi.org/10.21468/scipostphysproc.5.021
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