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A precision measurement of the 1s2s 1S0 - 1s2p 3P1 interval in helium-like silicon using fast-beam laser spectroscopy.

机译:使用快速光束激光光谱仪精确测量氦状硅中1s2s 1S0-1s2p 3P1间隔。

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摘要

In this dissertation, we present a precision measurement of the 1 s2s 1S0 -- 1 s2p 3P1 intercombination interval in the moderate-Z helium-like ion, 28Si 12+, using a fast-beam laser resonance technique. This experiment is a second-generation measurement designed to surpass the precision of the previous measurement of Redshaw et al. (Phys. Rev. Lett., 88 (2002) 023002), using an improved laser setup designed to cancel the Doppler shift. This was accomplished by incorporating a counter-propagating laser at 1,450 nm into the previous setup that used a co-propagating laser at 1,319 nm to induce the same transition. Our final result for this energy interval is 7,230.585(6) cm-1 with an overall precision of 0.8 parts-per-million (ppm). This result represents a 30-fold improvement over the previous measurement, and tests QED contributions at the level of 13 ppm. The two-electron atom/ion is a fundamental atomic system, and continues to be the subject of major theoretical work today. Hence, our precise measurement provides a clear test of modern theory, including higher-ordered QED effects.
机译:在本文中,我们使用快速束激光共振技术对中度Z氦样离子28Si 12+中1 s2s 1S0-1 s2p 3P1的复合间隔进行了精确测量。该实验是第二代测量,旨在超越Redshaw等人先前测量的精度。 (Phys.Rev.Lett。,88(2002)023002),使用改进的激光设置来抵消多普勒频移。这是通过将1,450 nm的反向传播激光合并到先前的设置中来实现的,该设置使用1,319 nm的共传播激光诱导相同的跃迁。我们对该能量间隔的最终结果是7,230.585(6)cm-1,总体精度为百万分之八十(ppm)。该结果比以前的测量结果提高了30倍,并以13 ppm的水平测试了QED的贡献。二电子原子/离子是基本的原子系统,并且仍然是当今主要理论工作的主题。因此,我们的精确测量提供了对现代理论的清晰检验,包括更高阶的QED效应。

著录项

  • 作者

    DeVore, Thomas Robert.;

  • 作者单位

    The Florida State University.;

  • 授予单位 The Florida State University.;
  • 学科 Physics Atomic.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 97 p.
  • 总页数 97
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学 ;
  • 关键词

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