Influence of group-velocity dispersion on multilevel phase-preserving amplitude regeneration in a nonlinear amplifying loop mirror

T. Röthlingshöfer, D. Toth, G. Onishchukov, B. Schmauss, G. Leuchs
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引用次数: 2

Abstract

Numerical simulations have shown a significant influence of group-velocity dispersion (GVD) of the highly nonlinear fiber on the transfer characteristics of a nonlinear amplifying loop mirror (NALM). The effect is especially strong for the anomalous dispersion regime where an interaction of GVD and self-phase modulation (SPM) leads to formation of high-order solitons. The irregularities of the resulting NALM transfer functions can be used for phase-preserving amplitude regeneration of several, irregular-spaced amplitude states for multi-level modulation formats. The regeneration performance was estimated for a 16QAM signal with three amplitude states where a reduction of amplitude noise without significant signal phase distortions has been observed.
群速度色散对非线性放大环镜中多电平保相振幅再生的影响
数值模拟表明,高度非线性光纤的群速色散(GVD)对非线性放大环镜(NALM)的传输特性有显著影响。在异常色散状态下,GVD和自相位调制(SPM)的相互作用导致高阶孤子的形成,这种效应尤其强烈。由此产生的NALM传递函数的不规则性可以用于多级调制格式的几种不规则间隔振幅状态的保相振幅再生。对具有三种振幅状态的16QAM信号的再生性能进行了估计,其中已经观察到在没有明显信号相位失真的情况下减少了振幅噪声。
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