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Evolution Of The Probability Density Functions Of Gaussian Ase Noise In Zero-memory Nonlinear Fiber

机译:零内存非线性光纤中高斯砷噪声概率密度函数的演化

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摘要

The propagation of Gaussian amplified emission noise in nonlinear optical fiber with negligible dispersion is considered. It is well known that fiber Kerr nonlinearity causes a nonlinear phase noise, also known as the Gordon-Mollenauer effect. In this paper, we examine the effect of the Kerr nonlinearity on the probability density functions of the Gaussian noise quadratures. This can lead to large deviations from the Gaussian statistics of the amplified spontaneous emission noise. Analytical statistics of the noise quadratures at the output of nonlinear fiber with negligible dispersion are derived and compared with numerical simulations. The statistics of the noise squared envelope are also presented and, based on these results, the influence of Kerr nonlinearity on the direct detection and coherent detection amplitude modulated links is discussed.
机译:考虑了高斯放大发射噪声在色散可忽略的非线性光纤中的传播。众所周知,光纤Kerr非线性会引起非线性相位噪声,也称为Gordon-Mollenauer效应。在本文中,我们研究了Kerr非线性对高斯噪声正交函数的概率密度函数的影响。这可能导致与放大的自发发射噪声的高斯统计量产生较大偏差。得出了色散可忽略的非线性光纤输出端的正交噪声的统计分析,并与数值模拟进行了比较。还介绍了噪声平方包络的统计量,并基于这些结果,讨论了Kerr非线性对直接检测和相干检测幅度调制链路的影响。

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