Proof-of-Principle Experiment for Testing Strong-Field Quantum Electrodynamics with Exotic Atoms: High Precision X-Ray Spectroscopy of Muonic Neon.

T Okumura,T Azuma,D A Bennett, I Chiu,W B Doriese,M S Durkin,J W Fowler,J D Gard, T Hashimoto,R Hayakawa,G C Hilton,Y Ichinohe,P Indelicato, T Isobe, S Kanda, M Katsuragawa, N Kawamura, Y Kino, K Mine, Y Miyake,K M Morgan, K Ninomiya, H Noda,G C O'Neil,S Okada,K Okutsu,N Paul, C D Reintsema,D R Schmidt, K Shimomura,P Strasser, H Suda,D S Swetz, T Takahashi,S Takeda, S Takeshita, M Tampo, H Tatsuno, Y Ueno,J N Ullom, S Watanabe,S Yamada

Physical review letters(2023)

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摘要
To test bound-state quantum electrodynamics (BSQED) in the strong-field regime, we have performed high precision x-ray spectroscopy of the 5g-4f and 5f- 4d transitions (BSQED contribution of 2.4 and 5.2 eV, respectively) of muonic neon atoms in the low-pressure gas phase without bound electrons. Muonic atoms have been recently proposed as an alternative to few-electron high-Z ions for BSQED tests by focusing on circular Rydberg states where nuclear contributions are negligibly small. We determined the 5g_{9/2}- 4f_{7/2} transition energy to be 6297.08±0.04(stat)±0.13(syst)  eV using superconducting transition-edge sensor microcalorimeters (5.2-5.5 eV FWHM resolution), which agrees well with the most advanced BSQED theoretical prediction of 6297.26 eV.
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关键词
exotic atoms,quantum,spectroscopy,proof-of-principle,strong-field,x-ray
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