首页> 外文期刊>International journal of applied mechanics >2.5 kW Narrow Linewidth Linearly Polarized All-Fiber MOPA With Cascaded Phase-Modulation to Suppress SBS Induced Self-Pulsing
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2.5 kW Narrow Linewidth Linearly Polarized All-Fiber MOPA With Cascaded Phase-Modulation to Suppress SBS Induced Self-Pulsing

机译:2.5千瓦窄线宽线性偏振全纤维MOPA,具有级联的相位调制,抑制SBS诱导的自脉冲

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摘要

As a major limitation for power scaling of high power narrow linewidth fiber master oscillator power amplifiers (MOPAs), Stimulated Brillouin Scattering (SBS) induced self-pulsing in polarization maintaining (PM) fiber amplifiers is well characterized and analyzed in this paper by comparing different white noise signal (WNS) phase-modulated modes in experiments. It is found that the self-pulsing effect is not observed in the PM-amplifier with single-frequency laser seed injection, and cascaded WNS modulation provides superior self-pulsing suppression than single WNS modulation with similar output linewidth. Moreover, the experimental results indicate that the self-pulsing threshold can hardly be predicted only by the output linewidth or the defined SBS threshold in a WNS phase modulated fiber amplifier system. As self-pulsing is originated from the spectral spikes in WNS modulated system, we theoretically analyzed characteristics of these spikes in different phase-modulation modes. It indicates the spectral peak intensity can be reduced by cascaded modulation, for which self-pulsing can be suppressed. The theoretical predictions agree well with the experimental results. At the same time, in order to suppress the mode instability effect, a plum blossom shaped bending mode selection device is used in this high-power narrow linewidth fiber amplifier system. Finally, a 32 GHz cascaded WNSs modulated, over than 2.5 kW linearly polarized all-fiber amplifier with a slope efficiency of 86.7% is demonstrated. The polarization extinction ratio (PER) is measured larger than 14 dB and the beam quality factor M-2 maintains lower than 1.3 in the power scaling process.
机译:作为高功率窄线宽光纤主振荡器功率放大器(MOPAS)的功率缩放的主要限制,刺激的布里渊散射(SBS)诱导在偏振维持(PM)光纤放大器中的自脉冲,并通过比较不同地分析并分析了本文的分析实验中的白色噪声信号(WNS)相位调制模式。结果发现,在具有单频激光种子喷射的PM放大器中未观察到自脉冲效果,并且级联的WNS调制提供比具有类似输出线宽的单个WNS调制优异的自脉冲抑制。此外,实验结果表明,仅通过WNS相位调制光纤放大器系统中的输出线宽或所定义的SBS阈值仅预测自脉脉冲阈值。由于自脉冲源自WNS调制系统中的光谱峰值,我们在不同的相调制模式下理论分析了这些尖峰的特性。它表示通过级联调制可以减小光谱峰值强度,其可以抑制自脉冲。理论预测与实验结果很好。同时,为了抑制模式不稳定效果,在该大功率窄线宽光纤放大器系统中使用梅花形弯曲模式选择装置。最后,调制32 GHz级联WNSS,倾斜效率超过2.5kW线性偏振的全光纤放大器86.7%。测量大于14dB的偏振消光比(每个),在电力缩放过程中,光束质量因子M-2保持低于1.3。

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