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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Theory of self-similar propagation of two coupled optical pulses in nonlinear optical fiber amplifiers: Coexistence and separation
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Theory of self-similar propagation of two coupled optical pulses in nonlinear optical fiber amplifiers: Coexistence and separation

机译:非线性光纤放大器中两个耦合光脉冲自相似传播的理论:共存和分离

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摘要

We present a systematic method to investigate the self-similar propagation of two coupled optical pulses in nonlinear optical fiber amplifiers. By taking into account the intrinsic self-similarity of the two coupled nonlinear Schrodinger equations, we cast them into two simple algebraic equations. We then show that the determining of the most stable power profiles for the self-similar evolution of each pulse is equivalent to the finding of the ground-state solution of binary Bose-Einstein condensate mixtures. Based on this, we find a family of asymptotically exact self-similar solutions, including the parabolic similaritons and the piecewise parabolic similaritons. Further, we propose an approximate method to determine the intermediate evolution of initial pulses toward these similaritons. Both the analytical and numerical results show that when the parameter of cross-phase modulation nonlinearity b is smaller (larger) than 1, the two coupled pulses favor the coexistence (separation) state, while when b=1,the collisionless shock waves could emerge.
机译:我们提出了一种系统的方法来研究非线性光纤放大器中两个耦合光脉冲的自相似传播。通过考虑两个耦合的非线性Schrodinger方程的内在自相似性,我们将它们转换为两个简单的代数方程。然后,我们表明为每个脉冲的自相似演化确定最稳定的功率分布等效于找到二元Bose-Einstein冷凝物混合物的基态解。基于此,我们找到了一系列渐近精确的自相似解,包括抛物线相似性和分段抛物线相似性。此外,我们提出了一种确定初始脉冲向这些相似子的中间演化的近似方法。分析和数值结果均表明,当交叉相位调制非线性参数b小于(大于)1时,两个耦合脉冲有利于共存(分离)状态,而当b = 1时,会出现无碰撞冲击波。

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