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Pulsed Cladding-Pumped Large Mode Area Fiber Raman Amplifier

机译:脉冲包层泵浦大模面积光纤拉曼放大器

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Cladding-pumped fiber Raman devices are becoming an attractive laser source solution thanks to their potential for power-scaling at arbitrary wavelength and good beam quality output through the beam clean-up of multimode beams. To date, demonstrations have been limited to devices with relatively small inner claddings and small cores because of the intensity required to reach the stimulated Raman scattering threshold. However, the small inner cladding dimension constrains to use relatively high-brightness pump sources. Furthermore, the core dimension also restricts the power scalability because of the smaller damage threshold in smaller core. Here, for the first time, we demonstrate a pulsed cladding-pumped fiber Raman amplifier based on a large mode area fiber with a 20 μm diameter, 0.06 NA, core and a 50 μm diameter, 0.2 NA, inner cladding. With these fiber dimensions, we show that it is possible to efficiently convert the pump into the 1st Stokes without undesired higher-order Raman scattering, provided that the fiber length is matched to the pump power. Using a 1064 nm, pulsed pump source we obtained a 2.15 kW output peak power for 2.8 kW of launched pump peak power in a single pass amplifier configuration. The M~2 parameter of the output beam at 1st Stokes is measured to be 1.69.
机译:包层泵浦光纤拉曼器件正成为一种有吸引力的激光源解决方案,这是因为它们具有在任意波长下进行功率缩放的潜力,并且通过多模光束的光束清理可以输出良好的光束质量。迄今为止,由于达到受激拉曼散射阈值所需的强度,示范仅限于具有相对较小的内包层和较小芯的设备。但是,较小的内包层尺寸限制了使用相对较高亮度的泵浦源。此外,由于较小核心中的损坏阈值较小,因此核心尺寸也限制了功率可伸缩性。在这里,我们首次展示了一个脉冲包层泵浦光纤拉曼放大器,该放大器基于具有20μm直径,0.06 NA,芯和50μm直径,0.2 NA,内包层的大模面积光纤。通过这些光纤尺寸,我们证明,只要光纤长度与泵浦功率匹配,就可以将泵有效地转换为第一斯托克斯,而不会发生不希望的高阶拉曼散射。在单通放大器配置中,使用1064 nm脉冲泵浦源,对于2.8 kW的发射泵浦峰值功率,我们获得了2.15 kW输出峰值功率。在第一个斯托克斯输出光束的M〜2参数测得为1.69。

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