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Numerical modelling of spectral, temporal and statistical properties of Raman fiber lasers

机译:拉曼光纤激光器光谱,时间和统计特性的数值建模

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摘要

Efficient numerical modelling of the power, spectral and statistical properties of partially coherent quasi-CW Raman fiber laser radiation is presented. XPM between pump wave and generated Stokes wave is not important in the generation spectrum broadening and XPM term can be omitted in propagation equation what sufficiently speeds-up simulations. The time dynamics of Raman fiber laser (RFL) is stochastic exhibiting events several times more intense that the mean value on the ps timescale. However, the RFL has different statistical properties on different time scales. The probability density function of spectral power density is exponential for the generation modes located either in the spectrum centre or spectral wings while the phases are distributed uniformly. The pump wave preserves the initial Gaussian statistics during propagation in the laser cavity. Intense pulses in the pump wave are evolved under the SPM influence and are not disturbed by the dispersion. Contrarily, in the generated wave the dispersion plays a significant role that results in stochastic behavior.
机译:提出了部分相干准连续拉曼光纤激光辐射的功率,光谱和统计特性的有效数值模型。泵浦波与生成的斯托克斯波之间的XPM在生成谱展宽中并不重要,并且可以在传播方程中省略XPM项,这可以充分加快模拟速度。拉曼光纤激光器(RFL)的时间动态是随机发生的,其事件强度比ps时标上的平均值强几倍。但是,RFL在不同的时间范围内具有不同的统计属性。频谱功率密度的概率密度函数对于位于频谱中心或频谱翼中的生成模式是指数的,而相位则均匀分布。泵浦波在激光腔中传播期间保留了初始的高斯统计。泵浦波中的强脉冲在SPM的影响下产生,不受色散的干扰。相反,在生成的波中,色散起着重要的作用,导致随机行为。

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