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首页> 外文期刊>IEEE Journal of Quantum Electronics >Stable Operating Region in a Harmonically Actively Mode-Locked Fiber Laser
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Stable Operating Region in a Harmonically Actively Mode-Locked Fiber Laser

机译:谐波主动锁模光纤激光器中的稳定工作区域

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We theoretically study the recovery of a harmonically actively mode-locked soliton fiber laser from pulse dropout. In such lasers, a large number of pulses propagate simultaneously in the cavity. In order to obtain stable operation, pulses that are dropped due to changes in environmental conditions should recover, while other pulses that propagate in the cavity should remain stable. Soliton perturbation theory is used to find stability conditions for the noise in a time slot where a steady state pulse exists and in a time slot where a pulse is dropped. In the stable operating region of the laser, noise is stable in the presence of a pulse while noise becomes unstable in time slots where a pulse is dropped. Such a stability condition ensures that the laser can recover from accidental pulse dropout. A good agreement between the results of a reduced model and the results of a comprehensive numerical simulation was obtained. The results of this paper may enable to improve the stability of actively mode-locked fiber lasers.
机译:我们从理论上研究了谐波主动锁模孤子光纤激光器从脉冲丢失中的恢复。在这样的激光器中,大量的脉冲在腔中同时传播。为了获得稳定的操作,应恢复由于环境条件变化而下降的脉冲,而在空腔中传播的其他脉冲应保持稳定。孤子摄动理论用于在存在稳态脉冲的时隙和在下降脉冲的时隙中找到噪声的稳定条件。在激光器的稳定工作区域中,在存在脉冲的情况下噪声是稳定的,而在掉落脉冲的时隙中噪声变得不稳定。这样的稳定​​性条件确保激光器可以从意外的脉冲丢失中恢复。简化模型的结果与综合数值模拟的结果之间取得了很好的一致性。本文的结果可能有助于提高主动锁模光纤激光器的稳定性。

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