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μ子氘核的核结构修正。

Nuclear structure corrections in muonic deuterium.

机构信息

Faculty of Physics, University of Warsaw, Hoża 69, 00-681 Warsaw, Poland.

出版信息

Phys Rev Lett. 2011 May 13;106(19):193007. doi: 10.1103/PhysRevLett.106.193007.

Abstract

The muonic hydrogen experiment measuring the 2P-2S transition energy [R. Pohl et al., Nature (London) 466, 213 (2010)] is significantly discrepant with theoretical predictions based on quantum electrodynamics. A possible approach to resolve this conundrum is to compare experimental values with theoretical predictions in another system, muonic deuterium μD. The only correction which might be questioned in μD is that due to the deuteron polarizability. We investigate this effect in detail and observe cancellation with the elastic contribution. The total value obtained for the deuteron structure correction in the 2P-2S transition is 1.680(16) meV.

摘要

缪子氢实验测量 2P-2S 跃迁能量 [R. Pohl 等人,《自然》(伦敦)466, 213 (2010)] 与基于量子电动力学的理论预测有显著差异。解决这一难题的一种可能方法是将实验值与另一个系统,即缪子氘 μD 的理论预测进行比较。μD 中可能受到质疑的唯一修正项是由于氘核的极化率。我们详细研究了这一效应,并观察到与弹性贡献的相消。在 2P-2S 跃迁中获得的氘核结构修正的总数值为 1.680(16) meV。

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