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A Determination of the Fine Structure Constant using Precision Measurements of Helium Fine Structure

机译:用氦精细结构的精密测量确定精细结构常数。

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摘要

Spectroscopic measurements of the helium atom are performed to high precision using an atomic beam apparatus and electro-optic laser techniques. These measurements, in addition to serving as a test of helium theory, also provide a new determination of the fine structure constant {\alpha}. An apparatus was designed and built to overcome limitations encountered in a previous experiment. Not only did this allow an improved level of precision but also enabled new consistency checks, including an extremely useful measurement in 3He. I discuss the details of the experimental setup along with the major changes and improvements. A new value for the J = 0 to 2 fine structure interval in the 23P state of 4He is measured to be 31 908 131.25(30) kHz. The 300 Hz precision of this result represents an improvement over previous results by more than a factor of three. Combined with the latest theoretical calculations, this yields a new determination of {\alpha} with better than 5 ppb uncertainty, {\alpha}-1 = 137.035 999 55(64).
机译:氦原子的光谱测量使用原子束设备和电光激光技术以高精度进行。这些测量除了用作氦理论的检验之外,还提供了精细结构常数{\ alpha}的新确定。设计并制造了一种设备来克服先前实验中遇到的限制。这不仅可以提高精度,还可以进行新的一致性检查,包括3He中极为有用的测量。我将讨论实验设置的详细信息以及主要的更改和改进。在4P He的23P状态下,J = 0至2精细结构间隔的新值测量为31 908 131.25(30)kHz。该结果的300 Hz精度比以前的结果提高了三倍以上。结合最新的理论计算,这得出了{\ alpha}的新确定值,不确定度大于5 ppb,{\ alpha} -1 = 137.035 999 55(64)。

著录项

  • 作者

    Smiciklas, Marc;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 20:41:51

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