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2S-4S Spectroscopy in Hydrogen Atom: the New Value for the Rydberg Constant and the Proton Charge Radius

机译:氢原子中的2S-4S光谱:Rydberg常数和质子电荷半径的新值

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The core of the "proton radius puzzle" is the discrepancy of four standard deviations between the proton root mean square charge radii (r_p) determined from regular hydrogen (H), and the muonic hydrogen atom (μp). We have measured the 2S-4P transition frequency in H, utilizing a cryogenic beam of H and directly demonstrate that quantum interference of neighboring atomic resonances can lead to line shifts much larger than the proton radius discrepancy. Using an asymmetric fit function we obtain r_p= 0.8335(95) fm and the Rydberg constant R∞= 10 973 731.568 076 (96) m~(-1). The new value for r_p is 3.3 combined standard deviations smaller than the latest CODATA value, but in good agreement with the value from μp.
机译:“质子半径拼图”的核心是由常规氢(H)确定的质子根平均平方电荷半径(R_P)与多余氢原子(μp)之间的四个标准偏差之间的差异。我们已经测量了H中的2S-4P过渡频率,利用H的低温光束,直接表明相邻原子谐振的量子干涉可以导致线移大于质子半径差异。使用不对称拟合功能,我们获得R_P = 0.8335(95)FM和Rydberg常数R∞= 10 973 731.568 076(96)M〜(-1)。 R_P的新值是3.3组合标准偏差小于最新的Codata值,但与μP的值很好。

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