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基于缪子氢 2S-2P 跃迁频率的测量得到的质子结构。

Proton structure from the measurement of 2S-2P transition frequencies of muonic hydrogen.

机构信息

Max-Planck-Institut für Quantenoptik, 85748 Garching, Germany.

出版信息

Science. 2013 Jan 25;339(6118):417-20. doi: 10.1126/science.1230016.

Abstract

Accurate knowledge of the charge and Zemach radii of the proton is essential, not only for understanding its structure but also as input for tests of bound-state quantum electrodynamics and its predictions for the energy levels of hydrogen. These radii may be extracted from the laser spectroscopy of muonic hydrogen (μp, that is, a proton orbited by a muon). We measured the 2S(1/2)(F=0)-2P(3/2)(F=1) transition frequency in μp to be 54611.16(1.05) gigahertz (numbers in parentheses indicate one standard deviation of uncertainty) and reevaluated the 2S(1/2)(F=1)-2P(3/2)(F=2) transition frequency, yielding 49881.35(65) gigahertz. From the measurements, we determined the Zemach radius, r(Z) = 1.082(37) femtometers, and the magnetic radius, r(M) = 0.87(6) femtometer, of the proton. We also extracted the charge radius, r(E) = 0.84087(39) femtometer, with an order of magnitude more precision than the 2010-CODATA value and at 7σ variance with respect to it, thus reinforcing the proton radius puzzle.

摘要

准确了解质子的电荷和 Zemach 半径至关重要,这不仅对于理解质子的结构,而且对于检验束缚态量子电动力学及其对氢能级的预测都具有重要意义。这些半径可以通过缪子氢(μp,即被缪子环绕的质子)的激光光谱学来提取。我们测量了μp 中 2S(1/2)(F=0)-2P(3/2)(F=1)的跃迁频率为 54611.16(1.05)千兆赫(括号内的数字表示不确定度的一个标准差),并重新评估了 2S(1/2)(F=1)-2P(3/2)(F=2)的跃迁频率,得到 49881.35(65)千兆赫。根据这些测量结果,我们确定了质子的 Zemach 半径 r(Z) = 1.082(37)飞米和磁半径 r(M) = 0.87(6)飞米。我们还提取了质子的电荷半径 r(E) = 0.84087(39)飞米,其精度比 2010-CODATA 值高一个数量级,与后者的差异为 7σ,从而进一步证实了质子半径之谜。

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