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Dynamics of Stokes Waves and Pulses Generated by Stimulated Brillouin Scattering in a Resonator Including Highly Nonlinear Fiber

机译:包含高度非线性光纤的谐振器中受激布里渊散射产生的斯托克斯波和脉冲的动力学

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We experimentally and theoretically investigate the generation of Stokes waves and the dynamics of pulses produced by cascaded stimulated Brillouin scattering (SBS) in a resonator, including a highly nonlinear fiber (HNLF) and an in-cavity erbium-doped fiber amplifier (EDFA) forming a multi-wavelength Brillouin erbium-doped fiber laser system. Using coupled wave equations with the Brillouin pump, Stokes and acoustic waves, propagation in the presence of the SBS and optical Kerr effect, the modeled system simulates the evolution of participating pump and Stokes waves to verify the experimental results. The dependence of the number of generated Stokes waves on EDFA pump and Brillouin pump powers is studied showing that the proper simultaneous change (increase or decrease) of the two pump powers over few hundred of milliwatts (using the power design diagram) results in generating the same number of Stokes waves reaching steady state. Dynamics of the interference signal at the resonator output are also presented for a long HNLF (33 m) showing strong instability due to the existence of a few longitudinal modes within the SBS gain bandwidth with the possibility of random mode hopping. For a short HNLF (3 m), a single longitudinal mode operation is possible and the stability of generated pulses is expected but still depends on the phase relationships per round trip of the participating pump and Stokes waves. A good consistency between simulation and experiment is found.
机译:我们从实验和理论上研究斯托克斯波的产生以及谐振器中级联受激布里渊散射(SBS)产生的脉冲的动力学,该谐振器包括高非线性光纤(HNLF)和腔内掺-光纤放大器(EDFA)形成多波长布里渊掺b光纤激光器系统。利用布里渊泵浦,斯托克斯和声波的耦合波方程,在存在SBS和光学Kerr效应的情况下传播,该模型系统模拟了参与泵浦和斯托克斯波的演化,以验证实验结果。研究了所产生的斯托克斯波数与EDFA泵功率和布里渊泵浦功率的相关性,显示出两个泵浦功率超过几百毫瓦的适当的同时变化(增加或减少)(使用功率设计图)会导致产生相同数量的斯托克斯波达到稳态。对于较长的HNLF(33 m),还显示了谐振器输出处的干扰信号动态,由于在SBS增益带宽内存在一些纵向模式,并可能出现随机模式跳变,因而显示出很强的不稳定性。对于较短的HNLF(3 m),可以进行单个纵向模式操作,并且可以预期生成的脉冲的稳定性,但仍取决于参与泵和斯托克斯波的每次往返行程的相位关系。在仿真和实验之间找到了良好的一致性。

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