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Temporal characterization of a multi-wavelength Brillouin–erbium fiber laser

机译:多波长布里渊in光纤激光器的时间特性

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This paper provides the first detailed temporal characterization of a multi-wavelength-Brillouin–erbium fiber laser (MWBEFL) by measuring the optical intensity of the individual frequency channels with high temporal resolution. It is found that the power in each channel is highly unstable due to the excitation of several cavity modes for typical conditions of operation. Also provided is the real-time measurements of the MWBEFL output power for two configurations that were previously reported to emit phase-locked picosecond pulse trains, concluded from their autocorrelation measurements. Real-time measurements reveal a high degree of instability without the formation of a stable pulse train. Finally, we model the MWBEFL using coupled wave equations describing the evolution of the Brillouin pump, Stokes and acoustic waves in the presence of stimulated Brillouin scattering, and the optical Kerr effect. A good qualitative consistency between the simulation and experimental results is evident, in which the interference signal at the output shows strong instability as well as the chaotic behavior due to the dynamics of participating pump and Stokes waves.
机译:本文通过测量具有高时间分辨率的各个频道的光强度,对多波长布里渊rill光纤激光器(MWBEFL)进行了首次详细的时间表征。已经发现,由于在典型的工作条件下激发了几种腔模,因此每个通道中的功率高度不稳定。还提供了两种配置的MWBEFL输出功率的实时测量结果,这些配置先前据报道会发出锁相皮秒脉冲序列,这是根据它们的自相关测量得出的。实时测量显示出高度的不稳定性,而没有形成稳定的脉冲序列。最后,我们使用耦合波方程对MWBEFL进行建模,该方程描述了在受激布里渊散射的存在下布里渊泵浦,斯托克斯和声波的演化以及光学克尔效应。在仿真和实验结果之间有很好的定性一致性,其中输出处的干扰信号显示出很强的不稳定性,并且由于参与的泵浦和斯托克斯波的动力学而导致混沌行为。

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