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A combined regular-logarithmic perturbation method for signal-noise interaction in amplified optical systems

机译:放大光学系统中信号对噪声相互作用的规则对数组合摄动方法

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摘要

We present a novel perturbation method for the nonlinear Schrödinger equation (NLSE) that governs the propagation of light in optical fibers. We apply this method to study signal-noise interactions in amplified multispan fiber-optic systems. Being based on a combination of the regular perturbation (RP) and logarithmic perturbation, the method is especially suitable for modeling the simultaneous presence of nonlinear and dispersive effects. Even after linearization, it retains the contribution of the quadratic perturbation terms of the NLSE, thereby achieving higher accuracy than an RP with comparable complexity. We revise parametric gain and nonlinear phase-noise effects under the new theory.We finally consider several examples and evaluate the probability density function of the optical or postdetection signal and the bit-error rate of an NRZ–OOK system. All of the results are compared with other models and with multicanonical Monte Carlo simulations.
机译:我们为非线性Schrödinger方程(NLSE)提供了一种新颖的摄动方法,该方程控制光纤在光纤中的传播。我们应用这种方法来研究放大的多跨光纤系统中的信号噪声相互作用。基于常规扰动(RP)和对数扰动的组合,该方法特别适用于对非线性和分散效应的同时存在进行建模。即使在线性化之后,它也保留了NLSE的二次扰动项的贡献,从而获得了比具有相当复杂性的RP更高的精度。我们在新理论下修改了参数增益和非线性相位噪声效应。最后考虑了几个示例,并评估了光学或后检测信号的概率密度函数以及NRZ-OOK系统的误码率。将所有结果与其他模型以及多规范蒙特卡洛模拟进行比较。

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