Sheng Quan, Lee Andrew, Spence David, Pask Helen
Opt Express. 2018 Nov 26;26(24):32145-32155. doi: 10.1364/OE.26.032145.
We report the wavelength tuning, linewidth narrowing and power enhancement of a continuous-wave intracavity Raman laser by incorporating solid etalons in the high-Q fundamental resonator. With a-cut Nd:GdVO and a-cut BaWO serving as the laser and Raman crystals respectively, tilting of a 50 μm-thick etalon in the high-Q fundamental cavity enabled the fundamental to be tuned from 1061.00 nm to 1065.20 nm. This gave rise to Stokes output which was tunable from 1176.46 nm to 1181.63 nm whilst the narrowed fundamental linewidth resulted in higher effective Raman gain and as a consequence enhanced output power, as well as the narrow-linewidth Stokes output. Frequency-doubling of the Stokes field resulted in yellow output tunable from 588.23 nm to 590.81 nm, which covers the guide star wavelength of 589.16 nm.
我们报道了通过在高Q值的基频谐振腔中加入固体标准具,实现连续波腔内拉曼激光器的波长调谐、线宽变窄和功率增强。分别采用a切割的Nd:GdVO和a切割的BaWO作为激光晶体和拉曼晶体,在高Q值基频腔中倾斜一块50μm厚的标准具,可使基频从1061.00nm调谐至1065.20nm。这产生了斯托克斯输出,其可从1176.46nm调谐至1181.63nm,同时变窄的基频线宽导致更高的有效拉曼增益,进而提高了输出功率以及产生了窄线宽的斯托克斯输出。斯托克斯光场的倍频产生了从588.23nm到590.81nm可调谐的黄色输出,该波长范围覆盖了589.16nm的导星波长。