氢原子的高分辨率光谱。一、方法与实验

J. Garreau, M. Allegrini, L. Julien, F. Biraben
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引用次数: 20

摘要

为了高精度地确定Rydberg常数R∞,我们对氢原子和氘原子进行了无多普勒双光子吸收实验。我们得到了一个新的R∞值,它与最近的其他测量结果非常吻合,并且是目前最精确的。这里我们详细报告我们所使用的方法和设备。制备了一个由2S H和D原子组成的亚稳光束,并在双光子跃迁中被激光激发到里德堡nS和nD能级(n)。实验几何结构经过精心设计,使原子束与两个反向传播的激光束共线。通过这种设置,我们观察到非常窄的共振,相对线宽小于10-9。在所有研究的跃迁中,我们选择了氢和氘中的三个跃迁(2S-8D, 2S-10D和2S-12D)来确定R∞。
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High Resolution Spectroscopy of the Hydrogen Atom. I. Method and Experiment
In order to determine the Rydberg constant R∞ to a very high accuracy, we have performed a Doppler-free two-photon absorption experiment on atomic hydrogen and deuterium. We have obtained a new value of R∞ which is in excellent agreement with other recent measurements and the most precise one at the present time. Here we give a detailed report on the method and apparatus we have used. A metastable beam of 2S H and D atoms has been prepared and laser excited to Rydberg nS and nD levels (n≽8) in a two-photon transition. The experimental geometry has been carefully designed to make the atomic beam collinear with the two counterpropagating laser beams. With this set-up we have observed very narrow resonances, with relative linewidths smaller than 10-9. Among all the transitions investigated we have selected three transitions (2S-8D, 2S-10D and 2S-12D) in hydrogen and deuterium to determine R ∞.
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