Lattice approach to the dynamics of the DPSK-encoded soliton trains

Y. Prylepskiy, S. Derevyanko, S. Turitsyn
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引用次数: 0

Abstract

We study the dynamical properties of the RZ-DPSK encoded sequences, focusing on the instabilities in the soliton train leading to the distortions of the information transmitted. The problem is reformulated within the framework of complex Toda chain model which allows one to carry out the simplified description of the optical soliton dynamics. We elucidate how the bit composition of the pattern affects the initial (linear) stage of the train dynamics and explain the general mechanisms of the appearance of unstable collective soliton modes. Then we discuss the nonlinear regime using asymptotic properties of the pulse stream at large propagation distances and analyze the dynamical behavior of the train classifying different scenarios for the pattern instabilities. Both approaches are based on the machinery of Hermitian and non-Hermitian lattice analysis.
dpsk编码孤子序列动力学的点阵方法
我们研究了RZ-DPSK编码序列的动力学特性,重点研究了孤子序列中导致传输信息失真的不稳定性。该问题在复杂的Toda链模型框架内重新表述,从而可以对光孤子动力学进行简化描述。我们阐明了模式的位元组成如何影响列车动力学的初始(线性)阶段,并解释了不稳定集体孤子模式出现的一般机制。然后利用脉冲流在大传播距离下的渐近特性讨论了脉冲流的非线性状态,并对模式不稳定性的不同情况进行了分析。这两种方法都是基于厄米格和非厄米格分析的机制。
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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