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Two-photon spectroscopy of low-lying states of lithium: energy levels, hyperfine structure, and isotope shifts

机译:锂低位态的双光子光谱:能级,超精细结构和同位素位移

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Summary form only given. We have used non-resonant two-photon laser spectroscopy to observe the 2S-3S and 2S-4S transitions of Li. The structure of these levels is shown. As the laser scans across each of these transitions, four are observed. For each of these resonances we manually set the laser to the peak of a transition. A computer controlled vacuum Fabry-Perot wavemeter determines the laser frequency with respect to an I/sub 2/-stabilized He-Ne laser with an accuracy of a few parts in 10/sup 9/. From these measurements we obtain precise transition energies between the ground state and excited state hyperfine levels. Because the ground state hyperfine splitting is known to extremely high precision, we are able to calculate the excited state hyperfine constants for the 3S and 4S states with a precision of about 1 MHz for both isotopes. Our value for the 3S hyperfine constant resolves a discrepancy between an earlier high precision experimental determination and recent theoretical calculations.
机译:仅提供摘要表格。我们已经使用非共振双光子激光光谱法观察了Li的2S-3S和2S-4S跃迁。显示了这些级别的结构。当激光扫描这些过渡中的每一个时,观察到四个。对于这些共振中的每一个,我们手动将激光设置为跃迁的峰值。计算机控制的真空Fabry-Perot波长计可确定相对于I / sub 2 /稳定的He-Ne激光器的激光频率,精确度为10 / sup 9 /的几分之一。从这些测量中,我们获得了基态和激发态超精细能级之间的精确跃迁能。由于已知基态超精细分裂的精度非常高,因此我们能够计算3S和4S态的激发态超精细常数,两个同位素的精度都约为1 MHz。我们对于3S超精细常数的值解决了较早的高精度实验确定与最新的理论计算之间的差异。

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