Cooper S F, Brandt A D, Rasor C, Burkley Z, Yost D C
Department of Physics, Colorado State University, Fort Collins, Colorado 80523, USA.
Rev Sci Instrum. 2020 Jan 1;91(1):013201. doi: 10.1063/1.5129156.
Precision spectroscopy of hydrogen often relies on effusive thermal atomic beams, and the uncertainty in the velocity distribution of these beams can introduce systematic errors and complicate lineshape models. Here, we present an apparatus capable of high signal-to-noise studies of these velocity distributions at cryogenic temperatures for both ground state (1S) and metastable (2S) hydrogen using a simple time-of-flight technique. We also investigate how the cryogenic nozzle geometry affects these results.
氢的精密光谱学通常依赖于热原子束流,而这些束流速度分布的不确定性会引入系统误差,并使线形模型复杂化。在此,我们展示了一种装置,它能够利用简单的飞行时间技术,在低温下对基态(1S)和亚稳态(2S)氢的这些速度分布进行高信噪比研究。我们还研究了低温喷嘴的几何形状如何影响这些结果。