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1.绍兴文理学院 数理信息学院,浙江 绍兴 312000
2.温州大学 激光与光电子技术研究所,浙江 温州 325035
[ "尉鹏飞(1981-),男,浙江绍兴人,博士,副教授,2010年于中国科学院上海光学精密机械研究所获得博士学位,主要从事激光物理与非线性光学方面的研究。E-mail:pfwei@sxu.edu.cn" ]
朱海永(1982-),男,浙江温岭人,博士,副教授,2010年于中国科学院福建物质结构研究所获得博士学位,2011年-2012年在新加坡南洋理工大学从事博士后研究,主要从事新型激光器及其变频激光的研究。E-mail: hyzhu@wzu.edu.cn ZHU Hai-yong, E-mail:hyzhu@wzu.edu.cn
收稿日期:2018-08-31,
录用日期:2018-10-8,
纸质出版日期:2019-01-15
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尉鹏飞, 张永昶, 张静, 等. 三镜直腔结构MgO: PPLN高效连续光参量振荡器[J]. 光学 精密工程, 2019,27(1):45-50.
Peng-fei WEI, Yong-chang ZHANG, Jing ZHANG, et al. Efficient continuous-wave MgO: PPLN optical parametric oscillator with three-mirror linear cavity[J]. Optics and precision engineering, 2019, 27(1): 45-50.
尉鹏飞, 张永昶, 张静, 等. 三镜直腔结构MgO: PPLN高效连续光参量振荡器[J]. 光学 精密工程, 2019,27(1):45-50. DOI: 10.3788/OPE.20192701.0045.
Peng-fei WEI, Yong-chang ZHANG, Jing ZHANG, et al. Efficient continuous-wave MgO: PPLN optical parametric oscillator with three-mirror linear cavity[J]. Optics and precision engineering, 2019, 27(1): 45-50. DOI: 10.3788/OPE.20192701.0045.
为了优化MgO: PPLN连续光参量振荡器(OPO)的输出特性,对三镜直腔结构的内腔式OPO系统进行腔结构设计,对其同时输出高效的信号光和闲频光进行研究。采用半导体激光端面抽运Nd: YVO
4
晶体实现连续的1 064 nm激光为基频光。对比分析了基频激光腔和OPO腔各腔镜分别采用平面镜或平凹镜的三种腔型结构的激光输出特性。基于30.5 μm的极化周期和12.4 W入射抽运功率时,获得了最高输出功率3.92 W(信号光2.6 W和闲频光1.32 W),转化效率31.6%的激光输出,对应的信号光和闲频光的中心波长分别为1 549 nm和3 394 nm。结果表明三个腔镜均采用平凹镜时,可有效的压缩基频激光腔在MgO: PPLN晶体上的光斑,提升基频激光的功率密度,而且基频激光腔和OPO腔的基模光斑在MgO: PPLN晶体上更好的匹配,从而提升变频效率。
In order to optimize the output characteristics of continuous-wave singly resonant MgO: PPLN optical parametric oscillations (OPO)
a compact three-mirror linear cavity structure was designed for efficient signal light and idler light outputs. A diode laser end-pumped Nd: YVO
4
crystal laser at 1 064 nm was used as the fundamental laser source to derive the OPO in the cavity. Three laser cavities with cavity mirrors chosen from plane mirror or plano-concave mirror were designed for comparison. The simulation results show that the fundamental laser beam could be compressed
and the power density could be improved on the MgO: PPLN crystal if all three cavity mirrors used the plano-concave mirror (named concave-concave-concave cavity in this paper). The frequency conversion efficiency would be improved for better mode matching between the fundamental cavity and the OPO cavity with the concave-concave-concave cavity. A total output power of 3.92 W and conversion efficiency of 31.6% were obtained at the incident pump power of 12.4 W and grating period of 30.5 μm. A 2.6 W light signal with the center wavelength at 1 549 nm and 1.32 W idler light with center wavelength at 3 394 nm were achieved.
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