Microwave-Optical Double-Resonance Spectroscopy Experiment of 199Hg+ Ground State Hyperfine Splitting in a Linear Ion Trap
We report a spectroscopy experiment of the ^199Hg+ ions are optically pumped by a discharge lamp and splitting is measured to be 40507347996.8(0.1)Hz by line width as 30mHz is also observed. This progress ion frequency standards. ground state hyperfine splitting in a linear ion trap. The cooled by h...
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Veröffentlicht in: | 中国物理快报:英文版 2014 (6), p.82-85 |
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creator | 柳浩 杨玉娜 何跃宏 李海霞 陈义和 佘磊 李交美 |
description | We report a spectroscopy experiment of the ^199Hg+ ions are optically pumped by a discharge lamp and splitting is measured to be 40507347996.8(0.1)Hz by line width as 30mHz is also observed. This progress ion frequency standards. ground state hyperfine splitting in a linear ion trap. The cooled by helium buffer gas. The ground state hyperfine the mierowave-optical double-resonance method. A nsrrow builds the foundation for the realization of trapped ^199Hg+ |
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This progress ion frequency standards. ground state hyperfine splitting in a linear ion trap. The cooled by helium buffer gas. The ground state hyperfine the mierowave-optical double-resonance method. 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This progress ion frequency standards. ground state hyperfine splitting in a linear ion trap. The cooled by helium buffer gas. The ground state hyperfine the mierowave-optical double-resonance method. A nsrrow builds the foundation for the realization of trapped ^199Hg+</abstract></addata></record> |
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source | IOP Publishing Journals; Institute of Physics (IOP) Journals - HEAL-Link |
subjects | 光谱实验 双共振 基态 微波 离子光学 离子阱 线性 超精细结构 |
title | Microwave-Optical Double-Resonance Spectroscopy Experiment of 199Hg+ Ground State Hyperfine Splitting in a Linear Ion Trap |
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