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Supercontinuum Spectrum Generation in a Dispersion Varying Optical Fiber(DFDF:Dispersion-Flattened/Decreasing Fiber and Tapered Fiber)

机译:色散可变光纤中的超连续谱产生(DFDF:色散扁平/渐减光纤和锥形光纤)

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摘要

Generation of supercontinuum(SC) in optical fibers is very attractive for large-capacity optical communication system since SC can produce short optical pulses over a broad spectral range more than a few hundred nm. It is well known that a high-quality and broad SC spectrum is generated due to adiabatic compression of soliton pulse in an optical fiber with a dispersion-flattened and dispersion-decreasing characteristic. In this paper, we demonstrate numerical analysis of spectral and temporal evolution of SC optical pulses and clarified the mechanism producing SC generation in such a dispersion varying optical fiber. The experimental verification of SC spectrum is followed by the analysis. Recently, ultra-broad supercontinuum spectrum has been reported in a short piece of conventional telecommunication fiber that was tapered since the tapered fiber possesses a dispersion-varying feature along the fiber length. The broadened SC spectrum was discussed numerically based on a split-step Fourier method.
机译:光纤中超连续谱(SC)的产生对于大容量光通信系统非常有吸引力,因为SC可以在数百纳米以上的宽光谱范围内产生短光脉冲。众所周知,由于在具有色散平坦和色散减小特性的光纤中,孤子脉冲的绝热压缩产生了高质量和宽的SC光谱。在本文中,我们演示了对SC光脉冲的光谱和时间演化的数值分析,并阐明了在这种色散变化光纤中产生SC的机理。分析之后是对SC光谱的实验验证。近来,由于锥形光纤沿光纤长度具有色散变化特性,因此在短段的常规电信光纤中已经报道了超宽带超连续谱。基于分步傅里叶方法对加宽的SC谱进行了数值讨论。

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