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Influence of structural parameters of high-power fiber lasers on stimulated Raman scattering and the suppression methods

机译:高功率光纤激光器的结构参数对受激拉曼散射的影响及抑制方法

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摘要

In high-power fiber lasers, stimulated Raman scattering (SRS) is a major factor limiting its power increase. In orderto analyze the influence of the SRS effect on high-power fiber lasers, based on the traditional SRS model, we proposea theoretical model of multimode fiber lasers and fiber amplifiers containing the SRS effect. Then, the theoreticalmodel is used to analyze the influence of various structural parameters of the fiber laser on the SRS effect. Accordingto the simulation analysis results, we constructed a fiber laser system based on a master oscillator power amplifierconfiguration to carry out verification experiments for various structural parameters. The experimental results showthat shortening the length of the gain fiber and the transmitting fiber, choosing a signal light of longer wavelength,and increasing the fiber core diameter can suppress the influence of the SRS effect on the fiber laser. And we applythe analysis results to 3 kW fiber laser system, and successfully achieve the suppression of SRS effect in the highpowerfiber laser.
机译:在高功率光纤激光器中,受激拉曼散射(SRS)是限制其功率增加的主要因素。为了 为了分析SRS效应对高功率光纤激光器的影响,基于传统的SRS模型,我们提出 包含SRS效应的多模光纤激光器和光纤放大器的理论模型。然后,理论 该模型用于分析光纤激光器的各种结构参数对SRS效应的影响。根据 根据仿真分析结果,我们构建了基于主振荡器功率放大器的光纤激光器系统 配置以进行各种结构参数的验证实验。实验结果表明 从而缩短了增益光纤和传输光纤的长度,选择了更长波长的信号光, 增加光纤纤芯直径可以抑制SRS效应对光纤激光器的影响。我们申请 将分析结果应用于3 kW光纤激光系统,并成功实现了大功率SRS效应的抑制 光纤激光器。

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