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High-power and pulse energy picosecond narrow linewidth laser system based on tapered fiber amplifier for second harmonic generation

机译:基于锥形纤维放大器进行二次谐波发电的大功率和脉冲能量PICOSECOND窄线宽激光系统

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We present the results of compact and cost-efficient high-power and energy laser system based on a picosecond gain-switched DFB laser diode operating at a wavelength of 1064 nm with spectral linewidth less than 0.1 nm and pulse duration of 50 ps and tapered double clad fiber (T-DCF) amplifier. The unique properties of T-DCF as efficient amplification of low power seed signal and suppressed threshold of nonlinearities allow achievement of both high peak power of 170 kW and pulse energy of 9 μJ at pulse repetition rate of 10 MHz while maintaining spectrum linewidth as narrow as 0.1 nm. High average output power of 150 W was obtained with slightly broader laser linewidth. We also demonstrate second harmonic generation with over 30 W at 532 nm wavelength with conversion efficiency of 38%. These results make MOPA system based on gain-switched DFB laser diode and T-DCF amplifier an attractive source for material processing and sensing application including time resolved Raman spectroscopy.
机译:我们介绍了基于PicoSecond增益切换的DFB激光二极管的紧凑型和成本高效的高功率和能量激光系统的结果,其波长为1064nm,光谱线宽小于0.1nm,脉冲持续时间为50 ps和锥形双 包层纤维(T-DCF)放大器。 T-DCF的独特性质是低功率种子信号的有效放大和非线性的抑制阈值允许在10 MHz的脉冲重复率下实现170千瓦的高峰功率和9μJ的脉冲能量,同时保持频谱宽度为窄的宽度 0.1 nm。 使用略大的激光线宽获得150W的高平均输出功率。 我们还展示了二次谐波产生,在532nm波长以上超过30W,转化效率为38%。 这些结果使基于增益开关的DFB激光二极管和T-DCF放大器的MOPA系统具有用于材料处理和感测应用的有吸引力的源,包括分辨的拉曼光谱。

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