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First observation of two hyperfine transitions in antiprotonic 3He

机译:首次观察到反质子 3 He中的两个超精细跃迁

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We report on the first experimental results for microwave spectroscopy of the hyperfine structure ofpˉ3He+. Due to the helium nuclear spin,pˉ3He+has a more complex hyperfine structure thanpˉ4He+, which has already been studied before. Thus a comparison between theoretical calculations and the experimental results will provide a more stringent test of the three-body quantum electrodynamics (QED) theory. Two out of four super-super-hyperfine (SSHF) transition lines of the(n,L)=(36,34)state were observed. The measured frequencies of the individual transitions are 11.12559(14) GHz and 11.15839(18) GHz, less than 1 MHz higher than the current theoretical values, but still within their estimated errors. Although the experimental uncertainty for the difference of these frequencies is still very large as compared to that of theory, its measured value agrees with theoretical calculations. This difference is crucial to be determined because it is proportional to the magnetic moment of the antiproton.
机译:我们报告了pˉ3He+超细结构的微波光谱的第一个实验结果。由于氦原子的核自旋,pˉ3He+具有比pˉ4He+更复杂的超精细结构,而pˉ4He+之前已经进行了研究。因此,理论计算和实验结果之间的比较将为三体量子电动力学(QED)理论提供更严格的检验。观察到(n,L)=(36,34)状态的四个超-超超细(SSHF)过渡线中的两个。各个跃迁的测量频率为11.12559(14)GHz和11.15839(18)GHz,比当前理论值高出不到1 MHz,但仍在其估计误差之内。尽管与理论值相比,这些频率差异的实验不确定性仍然很大,但其测量值与理论计算结果一致。该差异至关重要,因为它与反质子的磁矩成正比。

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