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Na₂的2 (³Σg⁺)、3 (³Σg⁺)和4 (³Σg⁺)态的超精细结构

Hyperfine structures of the 2 (3)Sigma(g) (+), 3 (3)Sigma(g) (+), and 4 (3)Sigma(g) (+) states of Na(2).

作者信息

Liu Yaoming, Li Li, Lazarov Guenadiy, Lazoudis Angelos, Lyyra A Marjatta, Field Robert W

机构信息

Department of Physics, Key Lab of Atomic and Molecular Nanosciences, Tsinghua University, Beijing 100084, China.

出版信息

J Chem Phys. 2004 Sep 22;121(12):5821-7. doi: 10.1063/1.1780162.

Abstract

The hyperfine structures of the 2 (3)Sigma(g) (+), 3 (3)Sigma(g) (+), and 4 (3)Sigma(g) (+) states of Na(2) have been resolved with sub-Doppler continuous wave perturbation facilitated optical-optical double resonance spectroscopy via A (1)Sigma(u) (+) approximately b (3)Pi(u) mixed intermediate levels. The hyperfine patterns of these three states are similar. The hyperfine splittings of the low rotational levels are all very close to the case b(betaS) limit. As the rotational quantum number increases, the hyperfine splittings become more complicated and the coupling cases become intermediate between cases b(betaS) and b(beta J) due to spin-rotation interaction. We present a detailed analysis of the hyperfine structures of these three (3)Sigma(g) (+) states, employing both case b(betaS) and b(beta J) coupling basis sets. The results show that the hyperfine splittings of the (3)Sigma(g) (+) states are mainly due to the Fermi-contact interaction. The Fermi contact constants for the two d sigma Rydberg states, the 2 (3)Sigma(g) (+) and 4 (3)Sigma(g) (+), are 245+/-5 MHz and 225+/-5 MHz, respectively, while the Fermi contact constant of the s sigma 3 (3)Sigma(g) (+) Rydberg state is 210+/-5 MHz. The diagonal spin-spin and spin-rotation constants, and nuclear spin-electronic spin dipolar interaction parameters of the 3 (3)Sigma(g) (+) and 4 (3)Sigma(g) (+) states are also obtained.

摘要

通过A (1)Σ(u) (+) ~ b (3)Π(u) 混合中间能级的亚多普勒连续波微扰辅助光-光双共振光谱,分辨出了Na₂的2 (3)Σ(g) (+)、3 (3)Σ(g) (+) 和4 (3)Σ(g) (+) 态的超精细结构。这三个态的超精细模式相似。低转动能级的超精细分裂都非常接近b(betaS) 极限情况。随着转动态量子数增加,由于自旋-转动相互作用,超精细分裂变得更加复杂,耦合情况介于b(betaS) 和b(beta J) 情况之间。我们使用b(betaS) 和b(beta J) 耦合基组对这三个 (3)Σ(g) (+) 态的超精细结构进行了详细分析。结果表明,(3)Σ(g) (+) 态的超精细分裂主要归因于费米接触相互作用。两个dσ里德堡态2 (3)Σ(g) (+) 和4 (3)Σ(g) (+) 的费米接触常数分别为245±5 MHz和225±5 MHz,而sσ 3 (3)Σ(g) (+) 里德堡态的费米接触常数为210±5 MHz。还获得了3 (3)Σ(g) (+) 和4 (3)Σ(g) (+) 态的对角自旋-自旋和自旋-转动常数以及核自旋-电子自旋偶极相互作用参数。

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