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Simulation solution for single and cascaded multi-wavelength Brillouin fiber lasers based on an analytical model

机译:基于分析模型的单级和级联多波长布里渊光纤激光器的仿真解决方案

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摘要

Here we propose a simulation model based on a previously reported analytical description of the Brillouin gain, that takes into account pump depletion, which allows us to make very accurate calculations for Brillouin fiber lasers (BFLs) working both in a single and cascaded multi-wavelength configurations. Output powers and conversion efficiencies are analyzed and compared with experimental results for various lasers setups using 25 km of a non-zero dispersion-shifted fiber (NZDSF) as the Brillouin gain media. In our experimental investigations, we used a pump laser at 1565 nm, with a bandwidth of 1 kHz, and output powers varying from 0 to its maximum value of 14 mW. We analyzed the laser behavior under various conditions using output couplers with output ratios varying from 10% to 90%, and to generate the cascaded Brillouin laser we have used a 10 m Erbium-doped optical fiber amplifier as a gain block in a separated cavity. Additionally, a spectral reconstruction is made based on power predictions of our model for the cascaded BFL with excellent agreement with experimental data.
机译:在这里,我们提出了一种基于先前报告的Brillouin增益的分析描述的仿真模型,该模型考虑了泵耗尽,这使我们能够为布里渊光纤激光器(BFL)计算在单个和级联的多波长中的布里渊纤维激光器(BFL)计算配置。分析输出功率和转换效率,并与各种激光器设置的实验结果相比,使用25 km的非零分散偏移光纤(NZDSF)作为Brillouin Gain媒体。在我们的实验研究中,我们在1565nm处使用了泵激光,带宽为1 kHz,输出功率从0到最大值为14 mW。我们在各种条件下使用输出耦合器分析了激光行为,输出比率从10%到90%变化,并产生级联布里渊激光器,我们使用了10米掺铒光纤放大器作为分离腔中的增益块。另外,基于与实验数据的级联BFL模型的功率预测来进行光谱重建。

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