来自电子-质子散射实验的小质子电荷半径
W Xiong1, A Gasparian2, H Gao1
1Duke University and Triangle Universities Nuclear Laboratory, Durham, NC, USA.
Nature
|November 8, 2019
概括
质子半径难题仍然存在,但这项研究
科学领域:
- 原子,分子和光学物理学
- 核物理
- 量子电动力学
背景情况:
- 质子电荷半径 (rp) 传统上是通过电子-质子散射和光谱学来确定的.
- 一个被称为"质子半径难题"的差异出现在2010年,
- 最近对普通的光谱测量也显示出差异,
研究的目的:
- 使用新型电子-质子散射方法精确测量质子电荷半径.
- 通过提供新的实验数据来解决正在进行的"质子半径难题".
- 调查不同实验值和理论值之间的差异.
主要方法:
- 在杰斐逊实验室 (PRad) 采用高精度电子质子散射实验.
- 使用无磁谱仪的方法来克服以前的实验的局限性.
- 在非常小的前向散射角度进行测量时采用无窗口的气目标.
主要成果:
- 测量了质子电荷半径为rp = 0.831 ± 0.007stat ± 0.012syst的米.
- 这一结果比最近的高精度电子-质子散射测量结果小.
- 测量值比以前所有电子-质子散射结果的平均值小2.7个标准偏差.
结论:
- 新的测量支持从体实验中获得的较小质子电荷半径值.
- 这些发现与修订后的里德伯格常数一致,
- 这项研究有助于解决长期存在的"质子半径难题".
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