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Comparison between the performance of the P-doped and Ge-doped Raman fiber lasers based on numerical simulations

机译:基于数值模拟的P掺杂和Ge掺杂拉曼光纤激光器性能比较

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With a published model that describes a nested fiber Raman cavity using FBGs as reflectors, we have made numerical simulations for the comparison between the performance of P-doped and Ge-doped fiber. Although the former fibers are the standard choice for fiber Raman lasers due to the large Raman gain, the latter can be also of interest because they present a large Raman shift so that the configuration of the Raman fiber laser can be simplified. We have considered a two-step Raman laser using a P-doped fiber and a six-step Raman laser using a Ge-doped fiber, both pumped by 1060 run and emitting at 1480 nm. The effects of the Raman fiber length, output coupler reflectivity and splice loss upon the behavior of both lasers are studied. Simulation results show that the P-doped fiber laser requires a longer fiber length while the Ge-doped fiber laser requires a higher output mirror reflectivity, and the RFL using Ge-doped fiber is more sensitive to the splice loss because of its large Stokes wave number. Finally, by comparison in the optimum configuration, we find that the P-doped fiber laser shows better output characteristics than Ge-doped fiber laser.
机译:利用公开的模型描述了使用FBG作为反射器的嵌套光纤拉曼腔,我们进行了数值模拟,以比较P掺杂和Ge掺杂光纤的性能。尽管前者由于拉曼增益大而成为光纤拉曼激光器的标准选择,但后者也很受关注,因为它们呈现出很大的拉曼位移,因此可以简化拉曼光纤激光器的配置。我们已经考虑了使用P掺杂光纤的两步拉曼激光器和使用Ge掺杂光纤的六步拉曼激光器,二者均以1060泵浦泵浦并在1480 nm处发射。研究了拉曼纤维长度,输出耦合器反射率和熔接损耗对两种激光器行为的影响。仿真结果表明,掺P光纤激光器需要更长的光纤长度,而掺Ge光纤激光器需要更高的输出镜反射率,并且掺Ge光纤的RFL由于其较大的斯托克斯波而对熔接损耗更敏感。数。最后,通过比较最佳配置,我们发现掺P光纤激光器比掺Ge光纤激光器具有更好的输出特性。

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