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Generation of fundamental soliton trains for high-bit-rate optical fiber communication lines

机译:用于高比特率光纤通信线路的基本孤子列的生成

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The authors present a method for the generation of high-quality soliton trains at a high repetition rate of gigahertz to terahertz range. During nonlinear propagation of a continuous-wave (CW) dual-frequency signal through a fiber with effective amplification, a train of practically noninteracting fundamental solitons is formed. It is shown that the effective amplification can be achieved as in usual fibers with an actual amplification as well as in fibers with nonuniform parameters along the fiber axis. The method is demonstrated experimentally. Dual-frequency 25 ps pulses at lambda =1.55 mu m are reshaped into 0.2 THz combs of 0.49 ps solitons in fiber with slowly decreasing dispersion. It is also shown that stimulated Brillouin scattering (SBS) can prevent a CW soliton train transmission through optical fibers, and suggests a method for suppression of SBS.
机译:作者提出了一种以千兆赫至太赫兹范围的高重复率生成高质量孤子列的方法。在连续波(CW)双频信号通过有效放大的光纤非线性传播期间,形成了一系列实际上互不干扰的基本孤子。已经表明,可以像在具有实际放大率的普通光纤中以及沿光纤轴具有不均匀参数的光纤中那样实现有效放大。实验证明了该方法。将λ= 1.55μm处的双频25 ps脉冲整形为光纤中的0.49 ps孤子的0.2 THz梳,并逐渐减小色散。还表明,受激布里渊散射(SBS)可以防止CW孤子列通过光纤传输,并提出了一种抑制SBS的方法。

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