Yang Xuezong, Kitzler Ondrej, Spence David J, Bai Zhenxu, Feng Yan, Mildren Richard P
Opt Lett. 2020 Apr 1;45(7):1898-1901. doi: 10.1364/OL.387879.
Laser guide stars based on the mesospheric sodium layer are becoming increasingly important for applications that require correction of atmospheric scintillation effects. Despite several laser approaches being investigated to date, there remains great interest in developing lasers with the necessary power and spectral characteristics needed for brighter single or multiple guide stars. Here we propose and demonstrate a novel, to the best of our knowledge, approach based on a diamond Raman laser with intracavity Type I second-harmonic generation pumped using a 1018.4 nm fiber laser. A first demonstration with output power of 22 W at 589 nm was obtained at 18.6% efficiency from the laser diode. The laser operates in a single longitudinal mode (SLM) with a measured linewidth of less than 8.5 MHz. The SLM operation is a result of the strong mode competition arising from the combination of a spatial-hole-burning-free gain mechanism in the diamond and the role of sum frequency mixing in the harmonic crystal. Continuous tuning through the Na D line resonance is achieved by cavity length control, and broader tuning is obtained via the tuning of the pump wavelength. We show that the concept is well suited to achieve much higher power and for temporal formats of interest for advanced concepts such as time-gating and Larmor frequency enhancement.
基于中层钠层的激光导星对于需要校正大气闪烁效应的应用正变得越来越重要。尽管迄今为止已经研究了几种激光方法,但人们仍然对开发具有产生更亮单颗或多颗导星所需功率和光谱特性的激光器有着浓厚兴趣。在此,据我们所知,我们提出并演示了一种基于金刚石拉曼激光器的新颖方法,该激光器采用1018.4 nm光纤激光器泵浦,腔内进行I型二次谐波产生。首次演示在589 nm处获得了22 W的输出功率,激光二极管的效率为18.6%。该激光器以单纵模(SLM)运行,测得的线宽小于8.5 MHz。单纵模运行是金刚石中无空间烧孔增益机制与谐波晶体中混频作用相结合产生的强烈模式竞争的结果。通过腔长控制实现了通过钠D线共振的连续调谐,并且通过泵浦波长调谐获得了更宽的调谐范围。我们表明,该概念非常适合实现更高的功率以及适用于诸如时间选通和拉莫尔频率增强等先进概念所需的时间格式。