基于光参量振荡的35 kHz中红外激光器研究

Research on mid-infrared laser at 35 kHz based on optical parametric oscillator

  • 摘要: 研究了基于高重频1064 nm激光泵浦的3.8 μm周期性极化铌酸锂(periodically poled LiNbO3, PPLN)光参量振荡器(optical parametric oscillator, OPO)。采用Nd :YVO4声光调Q激光器,获得了光束质量良好,重复频率25~35 kHz,最大平均输出功率6.1 W,脉冲宽度59.1 ns的1064 nm基频激光。模拟分析了在1064 nm激光泵浦下,极化周期Λ=29.5 μm MgO:PPLN晶体的温度调谐特性。通过实验,在25~200 ℃的温度范围内,获得了3599.6~3845.5 nm连续变化的中红外激光。当PPLN晶体温度为30 ℃,基频光功率为6.1 W时,得到了最大输出功率0.45 W ,重复频率为35 kHz的3845.5 nm中红外光输出。

     

    Abstract: A 3.8 μm periodically poled LiNbO3 optical parametric oscillator based on high repetition frequency pumping is studied. The Nd:YVO4 acousto-optic Q-switched laser is used, obtaining a fundamental 1064 nm laser with good beam quality, the repetition frequency at 25-35 kHz, the maximum average power of 6.1 W and the pulse width of 59.1 ns. The temperature tuning characteristic of MgO:PPLN crystal with the period Λ=29.5 μm under the 1064 nm laser pumping is simulated. Through experiments, the 3599.6-3845.5 nmmid-infrared laser is obtained at a temperature of 25-200 ℃. When the temperature of the PPLN crystal is 30 ℃and the pump power is 6.1 W, the mid-infrared laser is obtained with the maximum output power of 0.45 W and the repetition frequency of 35 kHz at 3845.5 nm.

     

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