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Suppression of stimulated Raman scattering in high power fiber laser systems by lumped spectral filters

机译:通过集体光谱滤波器抑制高功率光纤激光系统中的刺激拉曼散射

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We present a systematic study on the inhibition of stimulated Raman scattering by lumped spectral filters both in passive optical transport fibers and in fiber amplifiers. This study reveals the parameters that have the strongest influence on the suppression of the Raman scattering (such as the attenuation at the Raman wavelength and the insertion losses at the signal wavelength). These parameters have to be optimized in order to achieve the desired Raman inhibition and/or to minimize the loss in amplifier efficiency. The study is concluded with realistic predictions on the use of spectral filtering elements for Raman scattering inhibition in real-world high power fiber amplifiers.Thus, using for example 10 lumped spectral filters with 20 dB effective Raman attenuation and less than 0.25 dB insertion losses, a maximum Raman threshold increase by a factor of 3 is expected. In this context, long period gratings are proposed as promising filtering elements for Raman inhibition in high power fiber amplifiers.In order to experimentally verify the theoretical predictions and the suitability of long period gratings, a fiber amplifier consisting of 2 m active Ytterbium doped fiber was built. Three long period gratings were consecutively inserted at different positions along the fiber, and the Raman threshold was determined for each situation. It is shown that, with three long period gratings, the Raman -threshold (defined as the 20 dB ratio of Raman to signal output power) was increased by about 60%, which offers a good agreement with the theoretical predictions.
机译:我们对无源光传输纤维和光纤放大器中的集总光谱滤波器抑制刺激拉曼散射的系统研究。该研究揭示了对拉曼散射的抑制具有最强影响的参数(例如在拉曼波长处的衰减和信号波长处的插入损耗)。必须优化这些参数以实现所需的拉曼抑制和/或最小化放大器效率的损耗。该研究结束了对现实世界高功率纤维放大器中的拉曼散射抑制的光谱滤波抑制的使用现实预测。,使用例如具有20dB有效的拉曼衰减和小于0.25dB插入损耗的10个集总光谱滤波器,预期最大拉曼阈值增加3倍。在这种情况下,长期光栅被提出为高功率光纤放大器中的拉曼抑制的有前途的过滤元件。为了通过实验验证理论预测和长期光栅的合适性,由2M活性YTTerbium掺杂纤维组成的纤维放大器是建造。连续地插入三个长时段的光栅沿着纤维的不同位置,并且针对每种情况确定拉曼阈值。结果表明,具有三个长时段的光栅,拉曼--Threshold(定义为拉曼的20 dB比率为信号输出功率),增加了大约60%,其与理论预测提供了良好的一致性。

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