Investigation of stability of optical solitons propagation in dispersion managed transmission systems

A.A. Gourjii, V.B. Katok, V.G. Levandovskyy, Y.D. Shchepkina
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引用次数: 1

Abstract

This report is devoted to a stability investigation of pair solitons propagation in transmission DM lines using Lyapunov analysis based on a classical stability criterions of evolution of dynamical systems in different field in nonlinear physics. The evolution of the optical signal envelope along the cascaded fiber transmission system is given by nonlinear Schrodinger equation (NLSE). The results show that dynamic systems with minimum energy losses display general tendency, which leads to the instability of impulse propagation On the other hand, the dynamic systems, that has an energy dissipation, are more stable due to external perturbations. However this criteria is a relative one, it is necessary to achieve a sequence of solutions for some range of parameters of solitons impulses to give the decision concerning a stability of an impulse propagation along the solitons line.
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色散管理传输系统中光孤子传输稳定性的研究
本文基于非线性物理中不同场中动力系统演化的经典稳定性判据,利用李雅普诺夫分析方法研究了传输DM线路中对孤子传播的稳定性。用非线性薛定谔方程给出了级联光纤传输系统中光信号包络的演化过程。结果表明,能量损失最小的动力系统具有普遍的趋势,这导致了脉冲传播的不稳定性;反之,具有能量耗散的动力系统在外部扰动作用下更加稳定。然而,这是一个相对的准则,必须对孤子脉冲的某一参数范围求得一系列的解,才能判断脉冲沿孤子线传播的稳定性。
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