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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Impact of residual dispersion and ASE noise on the performance optimization of all-optical regenerators utilizing self-phase modulation in a highly nonlinear fiber
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Impact of residual dispersion and ASE noise on the performance optimization of all-optical regenerators utilizing self-phase modulation in a highly nonlinear fiber

机译:残余色散和ASE噪声对高度非线性光纤中利用自相位调制的全光再生器性能优化的影响

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摘要

The performance of an all-optical regenerator utilizing self-phase modulation in a highly nonlinear fiber and offset optical filtering is assessed using computer simulation. By varying the bandwidth and offset of the optical filter, the Q-factor performance of the regenerator is near-optimized for systems impaired by amplified spontaneous emission (ASE) noise and systems impaired by both residual dispersion (RD) and ASE noise. Generally, the near-optimum bandwidth and offset of the optical filter differs for these two types of systems. It is found that the selection of the bandwidth and offset is more stringent for systems with ASE noise only. For systems with RD and ASE noise, the selection of the filter bandwidth and offset depends on the amount of RD with quite different trends being observed. The regenerator is more effective when the RD is negative. The implication that the dispersion of the highly nonlinear fiber has on the regenerator performance is examined.
机译:利用计算机仿真评估了在高度非线性光纤中利用自相位调制和偏移光学滤波的全光再生器的性能。通过改变光滤波器的带宽和偏移量,再生器的Q因子性能几乎可以针对因放大的自发发射(ASE)噪声而受到损害的系统以及因残留色散(RD)和ASE噪声而受到损害的系统进行优化。通常,对于这两种类型的系统,光学滤波器的接近最佳带宽和偏移是不同的。发现仅对于具有ASE噪声的系统,带宽和偏移的选择更为严格。对于具有RD和ASE噪声的系统,滤波器带宽和偏移的选择取决于RD的数量,观察到的趋势完全不同。当RD为负时,再生器更有效。研究了高度非线性光纤的色散对再生器性能的影响。

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