Zhao Hui-Zi, Wang Hong-Yan, Tang Hao, Li Liang, Yang Zi-Ning, Yang Wei-Qiang, Han Kai, Xu Xiao-Jun
Appl Opt. 2021 Dec 10;60(35):10862-10866. doi: 10.1364/AO.440435.
The alkali atom concentration plays an important role in the performance of a diode pumped alkali vapor laser (DPAL). At the rubidium DPAL operational region, the alkali concentration is as high as 10-10, which is "optically thick," or opaque, for the 780 nm or 795 nm doublet D lines when the traditional scanning absorption spectrum method is used for concentration measurement. To solve this problem, we propose the use of a probe laser of 420 nm, which corresponds to the 5 to 6 transition and has a lower absorption cross section compared to the D-line doublet. Due to the moderate absorption strength at a fixed 420 nm probe wavelength, we realized fast, online measurement of the Rb concentration in a real-world DPAL. By combining it with the quasi-two-level model, we further provided the population distribution in the lower three energy levels. This fast, online diagnostic method could be well applied in DPAL concentration measurement, and could show the dynamics of a laser's performance.
碱金属原子浓度在二极管泵浦碱金属蒸汽激光器(DPAL)的性能中起着重要作用。在铷DPAL工作区域,碱金属浓度高达10-10,当使用传统的扫描吸收光谱法进行浓度测量时,对于780nm或795nm的D线双峰,该浓度处于“光学厚”或不透明状态。为了解决这个问题,我们提议使用420nm的探测激光,它对应于5到6跃迁,并且与D线双峰相比具有更低的吸收截面。由于在固定的420nm探测波长处吸收强度适中,我们实现了在实际DPAL中对铷浓度的快速在线测量。通过将其与准二能级模型相结合,我们进一步给出了较低三个能级中的粒子数分布。这种快速在线诊断方法可以很好地应用于DPAL浓度测量,并能展示激光器性能的动态变化。