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Muonic atom spectroscopy with microgram target material

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arxiv 2209.14365 v2 pith:UXW5RLMS submitted 2022-09-28 nucl-ex physics.atom-ph

Muonic atom spectroscopy with microgram target material

classification nucl-ex physics.atom-ph
keywords muonicatomtargetspectroscopyinsidematerialmeasurementmeasurements
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Muonic atom spectroscopy -- the measurement of the x rays emitted during the formation process of a muonic atom -- has a long standing history in probing the shape and size of nuclei. In fact, almost all stable elements have been subject to muonic atom spectroscopy measurements and the absolute charge radii extracted from these measurements typically offer the highest accuracy available. However, so far only targets of at least a few hundred milligram could be used as it required to stop a muon beam directly in the target to form the muonic atom. We have developed a new method relying on repeated transfer reactions taking place inside a 100-bar hydrogen gas cell with an admixture of 0.25% deuterium that allows us to drastically reduce the amount of target material needed while still offering an adequate efficiency. Detailed simulations of the transfer reactions match the measured data, suggesting good understanding of the processes taking place inside the gas mixture. As a proof of principle we demonstrate the method with a measurement of the 2p-1s muonic x rays from a 5-{\mu}g gold target.

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