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The FAMU experiment: muonic hydrogen high precision spectroscopy studies

handle: 20.500.14243/378413 , 10281/288623 , 11390/1188227 , 11590/371153 , 11311/1208764 , 11591/433403 , 11585/766927 , 11571/1372204
handle: 20.500.14243/378413 , 10281/288623 , 11390/1188227 , 11590/371153 , 11311/1208764 , 11591/433403 , 11585/766927 , 11571/1372204
AbstractThe FAMU experiment aims to measure for the first time the hyperfine splitting of the muonic hydrogen ground state. From this measurement the proton Zemach radius can be derived and this will shed light on the determination of the proton charge radius. In this paper, we describe the scientific goal, the method and the detailed preparatory work. This includes the outcome of preliminary measurements, subsequent refined simulations and the evaluation of the expected results. The experimental setup being built for the measurement of the hyperfine splitting to be performed at the RAL laboratory muon facility is also described.
proton Zemach radius; hyperfine splitting; muonic hydrogen; X-ray detectors; LaBr3:Ce scintillator., Muonic hydrogen; Transfer rate; Oxygen;, ZEMACH RADIUS, NUCLEAR STRUCTURE, ENERGY DEPENDENCE, 500, PROTON, 530, GROUND STATE, SCATTERING, muonic hydrogen, TRANSITION, MUONIC ATOM
proton Zemach radius; hyperfine splitting; muonic hydrogen; X-ray detectors; LaBr3:Ce scintillator., Muonic hydrogen; Transfer rate; Oxygen;, ZEMACH RADIUS, NUCLEAR STRUCTURE, ENERGY DEPENDENCE, 500, PROTON, 530, GROUND STATE, SCATTERING, muonic hydrogen, TRANSITION, MUONIC ATOM
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