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16 kW Yb Fiber Amplifier Using Chirped Seed Amplification for Stimulated Brillouin Scattering Suppression

机译:使用Chi种子放大的16 kW Yb光纤放大器用于刺激的布里渊散射抑制

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摘要

In a high power fiber amplifier, a frequency-chirped seed interrupts the coherent interaction between the laser and Stokes waves, raising the threshold for stimulated Brillouin scattering (SBS). Moving the external mirror of a vertical cavity surface-emitting diode laser 0.2 μm in 10 μs can yield a frequency chirp of 5×1017  Hz/s5×1017  Hz/s at a nearly constant output power. Opto-electronic feedback loops can linearize the chirp, and stabilize the output power. The linear variation of phase with time allows multiple amplifiers to be coherently combined using a frequency shifter to compensate for static and dynamic path length differences. The seed bandwidth, as seen by the counter-propagating SBS, also increases linearly with fiber length, resulting in a nearly-length-independent SBS threshold. Experimental results at the 1.6 kW level with a 19 m delivery fiber are presented. A numerical simulation is also presented.
机译:在高功率光纤放大器中,频率chi种子会中断激光和斯托克斯波之间的相干相互作用,从而增加了受激布里渊散射(SBS)的阈值。在10μs内移动垂直腔表面发射二极管激光器0.2μm的外镜,可以在几乎恒定的输出功率下产生5×1017 Hz / s5×1017 Hz / s的频率frequency。光电反馈回路可使线性调频线性化,并稳定输出功率。相位随时间的线性变化允许使用移频器将多个放大器相结合,以补偿静态和动态路径长度差异。从反向传播的SBS可以看出,种子带宽也随光纤长度线性增加,从而导致了几乎与长度无关的SBS阈值。给出了使用19 m传输光纤在1.6 kW水平下的实验结果。还提供了数值模拟。

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