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Experimental Study of the Transverse Mode Instability in Different Core Diameter Fiber Laser Oscillators

机译:不同芯径光纤激光振荡器横向模式不稳定性的实验研究

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With the increase of fiber laser output power, stimulated Raman scattering (SRS) and transverse mode instability (TMI)effects have become the main factors limiting the power boost of high-power, high-brightness fiber lasers. In this work, theTMI effect in different core diameter fiber laser oscillators are studied experimentally. In the 25/400YDF laser oscillator,the TMI threshold is around 1780W, while the TMI threshold of the 30/400YDF is around 1070W. A new type gain fiber(25-30-25YDF) by precisely splicing 25/400YDF with 30/400YDF is employed in the fiber oscillator. When the launchedpump power is ~2044W, the maximum average power of the 25-30-25YDF laser oscillator is up to ~1573W without anysign of the TMI. The experimental results show that the larger the efficient core diameter of the gain fiber, the lower TMIthreshold of the fiber laser oscillator under the identical experimental structure. By optimizing the length of different corediameter fibers in the cavity and improving the fusion quality of each splice point of the laser, the output average powerand beam quality of the fiber laser can be further improved.
机译:随着光纤激光器输出功率的增加,受激拉曼散射(SRS)和横模不稳定性(TMI) 效应已成为限制高功率,高亮度光纤激光器功率提升的主要因素。在这项工作中, 实验研究了不同纤芯直径的光纤激光振荡器中的TMI效应。在25 / 400YDF激光振荡器中, TMI阈值约为1780W,而30 / 400YDF的TMI阈值约为1070W。新型增益光纤 (25-30-25YDF)是通过将25 / 400YDF与30 / 400YDF精确拼接而成的(25-30-25YDF)用于光纤振荡器。何时推出 泵浦功率为〜2044W,25-30-25YDF激光振荡器的最大平均功率高达〜1573W,无任何 TMI的标志。实验结果表明,增益光纤的有效纤芯直径越大,TMI越低 相同实验结构下光纤激光振荡器的阈值。通过优化不同核心的长度 腔中直径较大的光纤,并提高了激光器每个拼接点的融合质量,输出的平均功率 可以进一步提高光纤激光器的光束质量。

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