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首页> 外文期刊>IEEE Journal of Quantum Electronics >Analysis of Gain Competition Suppression in Multiwavelength Actively Mode-Locked Erbium-Doped Fiber Lasers Incorporating a Highly Nonlinear Fiber
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Analysis of Gain Competition Suppression in Multiwavelength Actively Mode-Locked Erbium-Doped Fiber Lasers Incorporating a Highly Nonlinear Fiber

机译:掺入高度非线性光纤的多波长有源锁模掺Fiber光纤激光器的增益竞争抑制分析

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摘要

A numerical model for multiwavelength actively mode-locked erbium-doped fiber lasers (AML-EDFL) is presented. Using the model, the influences of four-wave mixing (FWM) and phase modulation effects (i.e., self-phase modulation (SPM) and cross-phase modulation (XPM)) can be studied, respectively. We use it to investigate AML-EDFLs incorporating a highly nonlinear fiber (HNLF) and explore the mechanisms for gain competition suppression (GCS). The net dispersion of the cavity is found critical for GCS. In the small dispersion regime, FWM dominates GCS, but SPM and XPM deteriorate the output pulses. In the large anomalous dispersion regime, SPM and XPM, however, enhance GCS and produce high-quality pulses. Degree of GCS is also quantitatively evaluated. The simulation results are at last confirmed by experiments.
机译:提出了一种多波长有源锁模掺fiber光纤激光器(AML-EDFL)的数值模型。使用该模型,可以分别研究四波混频(FWM)和相位调制效果(即,自相位调制(SPM)和交叉相位调制(XPM))的影响。我们用它来研究结合了高度非线性纤维(HNLF)的AML-EDFL,并探索抑制增益竞争的机制(GCS)。发现腔的净扩散对GCS至关重要。在小色散状态下,FWM在GCS中占主导地位,但SPM和XPM会使输出脉冲变差。但是,在大的异常色散状态下,SPM和XPM会增强GCS并产生高质量的脉冲。还定量评估了GCS的程度。最后通过实验证实了仿真结果。

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