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首页> 外文期刊>Journal of Lightwave Technology >Design of multistage gain-flattened fiber Raman amplifiers
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Design of multistage gain-flattened fiber Raman amplifiers

机译:多级增益平坦化光纤拉曼放大器的设计

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This paper presents a design approach for multistage gain-flattened fiber Raman amplifiers (FRAs) utilizing the multiwavelength-pumping scheme. To the authors' best knowledge, it is the first time that Raman amplifiers of more than one stage are considered in the design process so as to optimize multistage amplifier performance simultaneously. It is shown both theoretically and experimentally that optical power path integrals among several stages can, in principle, be arbitrarily redistributed while maintaining its gain performance, as long as the consolidated sums at different pump wavelengths are unaltered. The overall gain spectrum of a multistage FRA is thus very close to the cumulative spectrum of chained identical single-stage amplifiers with span numbers equal to its stages. However, the traditional prerequisite to minimize gain flatness in every stage is no longer required. It provides flexibilities to take full advantage of pump lasers with moderate launched powers and allows the reduction of the number of pump lasers and/or wavelengths in most stages. By arranging small positive net gain to the first stages and enhancing it at shorter signal wavelengths, significant reduction and flattening of total noise figure (NF) is achieved even if a pure backward pumping scheme is utilized. Finally, various pumping configurations for Raman amplifiers with hybrid dispersion-compensating fiber (DCF) and standard single-mode fiber (SMF) are discussed, with the objective of realizing flattened gain and noise performance simultaneously without using forward pumps.
机译:本文提出了一种采用多波长泵浦方案的多级增益平坦化光纤拉曼放大器(FRA)的设计方法。据作者所知,这是第一次在设计过程中考虑多级拉曼放大器,以便同时优化多级放大器的性能。从理论上和实验上都表明,只要不改变不同泵浦波长下的总和,原则上就可以任意重新分配几级之间的光功率路径积分,同时保持其增益性能。因此,多级FRA的总增益频谱非常接近跨度等于其级数的链接的相同单级放大器的累积频谱。但是,不再需要在每个阶段都将增益平坦度降至最低的传统先决条件。它提供了灵活性,可以充分利用具有中等发射功率的泵浦激光器,并且可以在大多数阶段减少泵浦激光器的数量和/或波长。通过将较小的正净增益安排到第一级并在较短的信号波长处对其进行增强,即使使用了纯后向泵浦方案,总噪声系数(NF)也会显着降低和平坦化。最后,讨论了具有混合色散补偿光纤(DCF)和标准单模光纤(SMF)的拉曼放大器的各种泵浦配置,目的是在不使用前向泵的情况下同时实现平坦的增益和噪声性能。

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