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Multi-kilowatt power scaling and coherent beam combining of narrow- linewidth fiber lasers

机译:窄线宽光纤激光器的多千瓦功率定标和相干光束组合

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We report results from two ~1.5 kW Yb-doped fiber amplifiers with comparable optical to optical efficiencies and linewidths. One amplifier utilized a fiber with a core diameter of 25 μm while the core diameter of the fiber utilized in the other amplifier was 20 μm. Stimulated Brillouin scattering (SBS) suppression in both cases was achieved through pseudo-random bit sequence (PRBS) phase modulation. While the power generated in the larger core fiber was modal instability (MI) limited, no sign of MI was observed in the smaller core fiber. This may allow us to utilize the higher MI threshold fiber to scale further while maintaining sufficiently narrow linewidth for beam combining. Furthermore, in a demonstration of the utility of applying a thermal gradient in conjunction with phase modulation to suppress SBS further, we report on a 1 kW amplifier driven at a PRBS clock rate of 2 GHz. Finally, we compare the coherent beam combining properties of amplifiers seeded with PRBS phase modulated sources to those seeded with white noise sources.
机译:我们报告了两个〜1.5 kW掺Yb的光纤放大器的结果,这些放大器具有可比的光学效率和线宽。一个放大器使用纤芯直径为25μm的光纤,而另一个放大器使用的纤芯直径为20μm。在两种情况下,都通过伪随机比特序列(PRBS)相位调制实现了受激布里渊散射(SBS)抑制。虽然较大芯光纤中产生的功率受到模态不稳定性(MI)的限制,但在较小芯光纤中未观察到MI迹象。这可以允许我们利用较高MI阈值的光纤进一步缩放,同时保持足够窄的线宽以进行光束组合。此外,在演示结合应用热梯度和相位调制以进一步抑制SBS的效用时,我们报告了一个以2 GHz PRBS时钟速率驱动的1 kW放大器。最后,我们比较了使用PRBS相位调制源播种的放大器与使用白噪声源播种的放大器的相干光束合并特性。

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