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Hysteresis phenomenon and multistability in figure-of-eight microstructured fiber laser

机译:八字形微结构光纤激光器的滞后现象和多稳态性

摘要

We report a theoretical investigation of multi-pulse emission of a microstructured figure-ofeight fiber laser operating in passive mode-locking. The proposed laser is mode locked by the nonlinear amplifying loop mirror (NALM). We study, in this paper, the hysteresis dependence and the number of pulses in steady state as a function of both the small signal gain and the nonlinear coefficient of microstructured fiber. The numerical simulation confirms that the pulse splitting is a consequence of the energy quantization in anomalous dispersion. Moreover, our results suggest that the hysteresis phenomenon is an intrinsic feature of the mode-locked fiber lasers independently of the exact mode-locking mechanism. Finally, we identify that the nonlinear coefficient of microstructured fiber plays a key role in the formation of multi-soliton.
机译:我们报告了在无源锁模模式下工作的微结构八字形光纤激光器的多脉冲发射的理论研究。所提出的激光器由非线性放大环镜(NALM)锁模。在本文中,我们研究了磁滞依赖关系以及稳态时的脉冲数与小信号增益和微结构光纤非线性系数的关系。数值模拟证实了脉冲分裂是反常色散中能量量化的结果。此外,我们的结果表明磁滞现象是锁模光纤激光器的固有特征,与确切的锁模机制无关。最后,我们确定微结构纤维的非线性系数在多孤子的形成中起关键作用。

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