Zhu Haiyong, Duan Yanmin, Zhang Ge, Huang Chenghui, Wei Yong, Shen Hongyuan, Zheng Yiqun, Huang Lingxiong, Chen Zhenqiang
Key Laboratory of Optoelectronic Materials Chemistry and Physics, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian, China.
Opt Express. 2009 Nov 23;17(24):21544-50. doi: 10.1364/OE.17.021544.
A high power and efficient 588 nm yellow light is demonstrated through intracavity frequency doubling of an acousto-optic Q-switched self-frequency Raman laser. A 30-mm-length double-end diffusion-bonded Nd:YVO(4) crystal was utilized for efficient self-Raman laser operation by reducing the thermal effects and increasing the interaction length for the stimulated Raman scattering. A 15-mm-length LBO with non-critical phase matching (theta = 90 degrees, phi = 0 degrees) cut was adopted for efficient second-harmonic generation. The focus position of incident pump light and both the repetition rate and the duty cycle of the Q-switch have been optimized. At a repetition rate of 110 kHz and a duty cycle of 5%, the average power of 588 nm light is up to 7.93 W while the incident pump power is 26.5 W, corresponding to an overall diode-yellow conversion efficiency of 30% and a slope efficiency of 43%.
通过声光调Q自频拉曼激光器的腔内倍频,实现了高功率、高效率的588nm黄光输出。采用了一块30mm长的双端扩散键合Nd:YVO(4)晶体,通过减少热效应和增加受激拉曼散射的相互作用长度,实现了高效的自拉曼激光运转。采用了一块15mm长、非临界相位匹配(θ = 90度,φ = 0度)切割的LBO晶体,以实现高效的二次谐波产生。对入射泵浦光的聚焦位置以及Q开关的重复频率和占空比进行了优化。在重复频率为110kHz、占空比为5%时,588nm光的平均功率高达7.93W,而入射泵浦功率为26.5W,对应的整体二极管-黄光转换效率为30%,斜率效率为43%。