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首页> 外文期刊>_Applied Physics Express >High Repetition Rate, 4 μm Mid-Infrared Generation with Periodically Poled Magnesium-Oxide-Doped Lithium Niobate Based Optical Parametric Oscillator Pumped by Fiber Laser
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High Repetition Rate, 4 μm Mid-Infrared Generation with Periodically Poled Magnesium-Oxide-Doped Lithium Niobate Based Optical Parametric Oscillator Pumped by Fiber Laser

机译:高重复率,4μm的中红外光谱仪,由光纤激光器泵浦周期性极化掺杂氧化镁的铌酸锂基光学参量振荡器

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摘要

We recently experimentally demonstrated a high-power, high-repetition-rate mid-infrared (mid-IR) radiation at 4.0 μm, based on the fiber-laser pumped optical-parametric-oscillator (OPO) configuration. To ensure the excellent characteristics of the OPO output, the master oscillator power amplifier (MOPA) structure fiber laser was developed as the pump source and the homemade periodically poled magnesium-oxide-doped lithium niobate (PPMgLN) crystal (60 mm in length) was employed in the oscillator. Under the pump power of 18.5 W, the maximum 2.03 W average power of 4.0 μm idler laser was finally achieved at a high repetition rate of 200 kHz. In addition, the overall OPO output power of 8.8 W was also realized, corresponding to the total conversion efficiency as high as 48%.
机译:最近,我们基于光纤激光泵浦的光参量振荡器(OPO)配置,通过实验证明了4.0μm的高功率,高重复频率的中红外(mid-IR)辐射。为确保OPO输出的出色特性,开发了主振荡器功率放大器(MOPA)结构光纤激光器作为泵浦源,并制作了自制的周期性极化掺杂氧化镁的铌酸锂(PPMgLN)晶体(长度为60 mm)。用于振荡器。在18.5 W的泵浦功率下,终于以200 kHz的高重复频率实现了4.0μm惰轮激光器的最大2.03 W平均功率。此外,还实现了8.8 W的总体OPO输出功率,对应于总转换效率高达48%。

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  • 来源
    《_Applied Physics Express》 |2013年第5期|052704.1-052704.3|共3页
  • 作者单位

    State Key Laboratory of Tribology, Center for Photonics and Electronics, Department of Precision Instrument, Tsinghua University, Beijing 100084, China;

    State Key Laboratory of Tribology, Center for Photonics and Electronics, Department of Precision Instrument, Tsinghua University, Beijing 100084, China;

    State Key Laboratory of Tribology, Center for Photonics and Electronics, Department of Precision Instrument, Tsinghua University, Beijing 100084, China;

    State Key Laboratory of Tribology, Center for Photonics and Electronics, Department of Precision Instrument, Tsinghua University, Beijing 100084, China;

    State Key Laboratory of Tribology, Center for Photonics and Electronics, Department of Precision Instrument, Tsinghua University, Beijing 100084, China;

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