Kim Eok Bong, Lee Won-Kyu, Park Chang Yong, Yu Dai-Hyuk, Park Sang Eon
Korea Research Institute of Standards and Science, 209 Gajeong-Ro, Yuseong-Gu, Daejeon 305-340, Korea.
Opt Express. 2010 May 10;18(10):10308-14. doi: 10.1364/OE.18.010308.
This study demonstrates 578 nm yellow light generation with a narrow linewidth using a waveguide periodically poled lithium niboate (PPLN) and an optical injection-locked diode laser. The frequency of an external cavity diode laser used as a master laser operating at 1156 nm in optical injection-locking mode was locked into a high-finesse cavity with the Pound-Drever-Hall technique, which results in a linewidth reduction of the master laser. The linewidth of the master laser was estimated to be approximately 1.6 kHz. In an effort to amplify the optical power, a distributed feed-back laser was phase-locked to the master laser by an optical injection-locking technique. A waveguide PPLN was used for second harmonic generation. Frequency-doubled yellow light of approximately 2.4 mW was obtained with a conversion efficiency of 6.5%.
本研究展示了使用波导周期性极化铌酸锂(PPLN)和光注入锁定二极管激光器产生具有窄线宽的578 nm黄光。在光注入锁定模式下,用作主激光器的外腔二极管激光器在1156 nm波长工作,其频率通过庞德 - 德瑞弗 - 霍尔技术锁定到一个高精细度腔中,这使得主激光器的线宽减小。估计主激光器的线宽约为1.6 kHz。为了放大光功率,采用光注入锁定技术将分布反馈激光器锁相到主激光器。使用波导PPLN进行二次谐波产生。获得了约2.4 mW的倍频黄光,转换效率为6.5%。