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Precision measurement sof the n = 2 phosphorus-3 intervals of atomic helium: A determination of the fine-structure constant.

机译:原子氦的n = 2磷3间隔的精密测量:精细结构常数的确定。

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摘要

The fine-structure constant is a fundamental constant of nature and its value quantifies the strength of electromagnetic interactions of charged particles. Comparison of high-precision theory and experiment of the 23P fine-structure intervals of helium will allow for a determination of the fine-structure constant.;The 23P1-to-23P0 interval in atomic helium is measured using a thermal beam of metastable helium atoms excited to the 23P state using a 1083-nm diode laser. The 23P1-to-23P0 magnetic-dipole transition is driven by 29.6-GHz microwaves in a rectangular waveguide cavity. The result of 29 616 950.9 +/- 0.9 kHz is the most precise measurement of helium 23P fine structure. When compared to similarly precise theoretical determinations for this interval, this measurement allows for a determination of the fine-structure constant to 15 parts-per-billion precision.;A technique to determine the 2.29-GHz 23P1-to-2 3P2 interval in atomic helium to a precision of less than 300 Hz is detailed. A precise determination of this interval will allow for a high-level test of the theory required to predict the energy splitting of both the 23P1-to-23P2 and 23P1-to-23P0 intervals.
机译:精细结构常数是自然界的基本常数,其值可量化带电粒子的电磁相互作用强度。高精度理论与氦的23P精细结构区间的比较实验可以确定精细结构常数。;使用亚稳氦原子的热束测量原子氦中的23P1至23P0区间使用1083 nm二极管激光器将其激发到23P状态。 23P1至23P0磁偶极跃迁由矩形波导腔中的29.6 GHz微波驱动。 29 616 950.9 +/- 0.9 kHz的结果是对氦23P精细结构的最精确测量。与该间隔的类似精确理论确定相比,此测量可以确定恒定至15十亿分之一精度的精细结构。;一种确定原子中2.29 GHz 23P1至2 3P2间隔的技术详细介绍了氦气的精确度低于300 Hz。精确确定此间隔将允许对预测23P1至23P2和23P1至23P0间隔的能量分配所需的理论进行高级测试。

著录项

  • 作者

    George, Matthew Charles.;

  • 作者单位

    York University (Canada).;

  • 授予单位 York University (Canada).;
  • 学科 Physics Atomic.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 126 p.
  • 总页数 126
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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