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Vector theory of stimulated Raman scattering and its application to fiber-based Raman amplifiers

机译:受激拉曼散射的矢量理论及其在基于光纤的拉曼放大器中的应用

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A vector theory of the stimulated Raman scattering process is developed for describing the polarization effects in fiber-based Raman amplifiers. We use this theory to show that polarization-mode dispersion (PMD) induces large fluctuations in an amplified signal. It is found that PMD-induced fluctuations follow a log-normal distribution. We also discuss the random nature of the polarization-dependent gain (PDG) in Raman amplifiers. Using the concept of a PDG vector, we find the probability distribution of PDG in an analytic form and use it to show that both the mean and the standard deviation of PDG depend on the PMD parameter inversely when the effective fiber length is much larger than the PMD diffusion length. We apply our theory to study how PDG can be reduced by scrambling pump polarization randomly and show that the mean value of PDG is directly proportional to the degree of pump polarization. (C) 2003 Optical Society of America. [References: 33]
机译:建立了受激拉曼散射过程的矢量理论,用于描述基于光纤的拉曼放大器中的偏振效应。我们使用这一理论来证明偏振模色散(PMD)在放大的信号中引起较大的波动。发现PMD引起的波动遵循对数正态分布。我们还将讨论拉曼放大器中偏振相关增益(PDG)的随机性。使用PDG向量的概念,我们以解析形式找到了PDG的概率分布,并用它来证明当有效纤维长度远大于PDG时,PDG的均值和标准偏差均反过来取决于PMD参数。 PMD扩散长度。我们运用我们的理论研究如何通过随机加扰泵浦极化来降低PDG,并表明PDG的平均值与泵浦极化程度成正比。 (C)2003年美国眼镜学会。 [参考:33]

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