首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Experimental study of a random fiber laser made from the combination of single-mode fiber and dispersion compensated fiber
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Experimental study of a random fiber laser made from the combination of single-mode fiber and dispersion compensated fiber

机译:单模光纤与色散补偿光纤结合制成的随机光纤激光器的实验研究

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摘要

Random lasing (RL) characteristics through different combinations of single-mode fiber (SMF) and dispersion compensated fiber (DCF) with a Raman pump (i.e., DCF is mounted at the front or at the end of the SMF; the length of the SMF and DCF is also changeable) are studied in this paper. The results indicate that the position and length ratio of DCF and SMF influence the output of the random distributed feedback fiber laser (RDF-FL) greatly (e.g., lasing threshold, spectrum stability, and shape). When the DCF is located at a position where higher laser power is distributed, RL can be enhanced remarkably. In addition, second-order RDF-FL is realized in an SMF/DCF mixed cavity pumped bidirectionally from the fiber center, indicating that the pump method is also an important factor that influences the performance of the RDF-FL. These results are useful for revealing the role of DCF in RL and light amplification, and also for providing theoretical support for flexible design and optimization of the RDF-FL.
机译:通过拉曼泵通过单模光纤(SMF)和色散补偿光纤(DCF)的不同组合获得的随机激光(RL)特性(即DCF安装在SMF的前端或末端; SMF的长度)并且DCF也是可变的)。结果表明DCF和SMF的位置和长度比极大地影响了随机分布反馈光纤激光器(RDF-FL)的输出(例如激光阈值,光谱稳定性和形状)。当DCF位于分配较高激光功率的位置时,可以显着增强RL。另外,在从光纤中心双向泵送的SMF / DCF混合腔中实现了二阶RDF-FL,这表明泵浦方法也是影响RDF-FL性能的重要因素。这些结果可用于揭示DCF在RL和光放大中的作用,也可为RDF-FL的灵活设计和优化提供理论支持。

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