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Femtosecond OPO based on MgO:PPLN synchronously pumped by a 532 nm fiber laser

机译:基于MgO的飞秒OPO:PPLN由532 nm光纤激光器同步泵送

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摘要

With the rapid progress in fiber technologies, femtosecond fiber lasers, which are compact, cost-effective and stable, have been developed and are commercially available. Studies of optical parametric oscillators (OPOs) pumped by this type of laser are demanding. Here we report a femtosecond optical parametric oscillator (OPO) at 79.6 MHz repetition rate based on MgO-doped periodically poled LiNbO3 (MgO:PPLN), synchronously pumped by the integrated second harmonic radiation of a femtosecond fiber laser at 532 nm. The signal delivered by the single resonant OPO is continuously tunable from 757 to 797 nm by tuning the crystal temperature in a poling period of 7.7 mu m. The output signal shows good beam quality in TEM00 mode profile with pulse duration of 206 fs at 771 nm. Maximum output signal power of 71 mW is obtained for a pump power of 763 mW and a low pumping threshold of 210 mW is measured. Moreover, grating tuning and cavity length tuning of the signal wavelength are also investigated.
机译:随着光纤技术的快速进展,已经开发了强大,成本效益和稳定的飞秒纤维激光器,并且是商业上可用的。通过这种激光泵浦的光学参数振荡器(OPOS)的研究要求苛刻。在这里,我们以基于MgO掺杂的周期性极化的LINBO3(MgO:PPLN)报告了一个小模型光学参数振荡器(OPO),其基于MgO掺杂的LINBO3(MGO:PPLN),通过在532nm处的飞秒光纤激光器的集成第二谐波辐射同步泵浦。通过在7.7μm的极化期间调谐晶体温度,由单谐振OPO输送的信号通过757至797nm连续调谐。输出信号在TEM00模式配置文件中显示出良好的光束质量,脉冲持续时间为206 fs,771 nm。为763mW的泵浦功率获得71mW的最大输出信号功率,测量210mW的低泵送阈值。此外,还研究了信号波长的光栅调谐和腔长调谐。

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