A measurement of the atomic hydrogen Lamb shift and the proton charge radius
N. Bezginov, T. Valdez, Marko Horbatsch, A. Marsman, Amar C. Vutha, Eric A. Hessels
Abstract
N. Bezginov, T. Valdez, Marko Horbatsch, A. Marsman, Amar C. Vutha, Eric A. Hessels
Abstract
Unraveling the proton puzzle The discrepancy between the proton size deduced from the Lamb shift in muonic hydrogen and the average, textbook value based on regular (electronic) hydrogen has puzzled physicists for nearly a decade. One possible resolution could be that electrons interact with protons in a different way than muons do, which would require “new physics.” Bezginov et al. measured the Lamb shift in electronic hydrogen, which allowed for a direct comparison to the Lamb shift measured in muonic hydrogen. The two results agreed, but the discrepancy with the averaged value remains. Science , this issue p. 1007
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Unraveling the proton puzzle The discrepancy between the proton size deduced from the Lamb shift in muonic hydrogen and the average, textbook value based on regular (electronic) hydrogen has puzzled physicists for nearly a decade. One possible resolution could be that electrons interact with protons in a different way than muons do, which would require “new physics.” Bezginov et al. measured the Lamb shift in electronic hydrogen, which allowed for a direct comparison to the Lamb shift measured in muonic hydrogen. The two results agreed, but the discrepancy with the averaged value remains. Science , this issue p. 1007
Key concepts: Lamb shift, Charge radius, Exotic atom, Muon, Proton, Hydrogen, RADIUS, Physics