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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Experimental observation of a new modulational instability spectral window induced by fourth-order dispersion in a normally dispersive single-mode optical fiber
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Experimental observation of a new modulational instability spectral window induced by fourth-order dispersion in a normally dispersive single-mode optical fiber

机译:在常色散单模光纤中由四阶色散引起的新调制不稳定性谱窗的实验观察

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摘要

We experimentally investigate the influence of the fourth-order dispersion (FOD) on the onset of scalar spontaneous modulational instability (MI) in a single-mode optical fiber. This study was performed in the normal dispersion regime of a dispersion-shifted fiber pumped by a quasi-continuous laser diode operating near the zero-dispersion wavelength. We experimentally demonstrate the evidence of a new MI spectral window due to the FOD effect in the normal dispersion regime. The effect of random fluctuations of the zero-dispersion wavelength along the fiber is considered for effective gain prediction. The measured modulation frequencies, which range from 5 up to 9 THz for an input power of 7 W, are in very good agreement with those obtained from the linear stability analysis. The FOD induced-MI can be used for broadband wavelength conversion. In addition it can be of a great interest for the generation of ultra-high repetition rate train of femtosecond pulses.
机译:我们实验研究四阶色散(FOD)对单模光纤中标量自发调制不稳定性(MI)的影响。这项研究是在色散位移光纤的正常色散状态下进行的,该色散位移光纤是由工作在零色散波长附近的准连续激光二极管泵浦的。我们通过实验证明了由于正常分散状态下的FOD效应而出现了新的MI光谱窗口的证据。零色散波长沿光纤的随机波动的影响被认为是有效的增​​益预测。对于7 W的输入功率,测得的调制频率范围为5至9 THz,与线性稳定性分析获得的频率非常吻合。 FOD诱导的MI可以用于宽带波长转换。另外,对于飞秒脉冲的超高重复率序列的产生,可能会引起极大的兴趣。

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