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Spectroscopy of high angular momentum Rydberg states with (2)S(1/2) ion cores.

机译:具有(2)S(1/2)离子核的高角动量Rydberg态的光谱学。

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摘要

The fine structure intervals of n=17 and 20 have been measured in magnesium and barium for a range, 7 ≤ L ≤ 13, of angular momentum states. This systematic study used microwave spectroscopy with selective laser excitation for detection of Rydberg levels by Stark ionization. These precise measurements lead to up to two orders of magnitude improvement from past experimental determinations of the induced polarizabilities of the ground state ionic cores. The measured polarizabilities are, for Mg+, alphad = 35.02(4) a30 and alphaQ = 202(54) a50 , and for Ba+, alphad = 124.09(27) a30 and alphaQ = 4238(643) a50 .; An opportunity to test the adequacy of the long-range model, historically used to treat high-angular momentum fine structure data, is possible with the availability of independent theoretical calculations. Previously, studies have revealed excellent agreement with calculated values of the induced dipole polarizability of the ion core. A large discrepancy is found, however, between experiment and the best theoretical calculations for the induced quadrupole polarizability. These previous disagreements between theory and experiment for 2S1/2 systems have been largely resolved in this work. In addition, the inclusion of core fine structure in the long-range model will be shown to describe the spin-orbit splittings of high-L barium states.
机译:在角动量状态的7≤L≤13范围内,已在镁和钡中测量了n = 17和20的精细结构间隔。这项系统的研究使用了具有选择性激光激发的微波光谱技术,通过Stark电离检测Rydberg含量。这些精确的测量结果从过去对基态离子核诱导极化率的实验确定中得出的结果最多提高了两个数量级。对于Mg +,测得的极化率是alphad = 35.02(4)a30和alphaQ = 202(54)a50,对于Ba +,alphad = 124.09(27)a30和alphaQ = 4238(643)a50。借助独立的理论计算,有可能检验历史上用于处理高角动量精细结构数据的远程模型的适当性。以前,研究表明与离子核的诱导偶极极化率的计算值具有极好的一致性。然而,在实验和最佳的理论计算之间,感应的四极极化率存在很大差异。这项工作在很大程度上解决了先前关于2S1 / 2系统理论与实验之间的分歧。另外,将显示出在远程模型中包含核心精细结构来描述高L钡态的自旋轨道分裂。

著录项

  • 作者

    Snow, Erica Lynn.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Physics Atomic.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 141 p.
  • 总页数 141
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;光学;
  • 关键词

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