Split Step Fourier Method Based Pulse Propagation Model for Nonlinear Fiber Optics

M. Y. Hamza, S. Tariq
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引用次数: 10

Abstract

A pulse propagation model is essential to investigate various effects in nonlinear optical fiber communications. Split step Fourier method (SSFM) is an efficient technique to implement nonlinear Schrodinger equation (NLSE) which describes pulse propagation phenomenon in optical fiber. We report some simulation results obtained using our developed model based on SSFM. Our results are in well accordance with the standard results presented in the literature. We also report the effects of pre-and post-compensations to minimize pulse degradation in the presence of fiber loss, dispersion and nonlinearity. Our developed model can be used to analyze various aspects of pulse propagation in nonlinear optical fiber communications.
基于分步傅立叶方法的非线性光纤脉冲传输模型
脉冲传播模型是研究非线性光纤通信中各种效应的必要条件。分步傅里叶方法是实现描述光纤中脉冲传播现象的非线性薛定谔方程的一种有效方法。本文报告了利用基于SSFM的模型得到的一些仿真结果。我们的结果与文献中给出的标准结果完全一致。我们还报告了在光纤损耗、色散和非线性存在的情况下,预补偿和后补偿对最小化脉冲退化的影响。该模型可用于分析非线性光纤通信中脉冲传输的各个方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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