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The dynamical complexity of optically injected semiconductor lasers

机译:光学注入半导体激光器的动力学复杂性

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This report presents a modem approach to the theoretical and experimental study of complex nonlinear behavior of a semiconductor laser with optical injection-an example of a widely applied and technologically relevant forced nonlinear oscillator. We show that the careful bifurcation analysis of a rate equation model yields (i) a deeper understanding of already studied physical phenomena, and (ii) the discovery of new dynamical effects, such as multipulse excitability.Different instabilities, cascades of bifurcations, multistability, and sudden chaotic transitions, which are often viewed as independent, are in fact logically connected into a consistent web of bifurcations via special points called organizing centers. This theoretical bifurcation analysis has predictive power, which manifests itself in good agreement with experimental measurements over a wide range of parameters and diversity of dynamics.While it is dealing with the specific system of an optically injected laser, our work constitutes the state-of-the-art in the understanding and modeling of a nonlinear physical system in general. (c) 2005 Published by Elsevier B.V.
机译:本报告提出了一种现代方法,对光学注入的半导体激光器的复杂非线性行为进行理论和实验研究,这是一个广泛应用且与技术相关的强迫非线性振荡器的例子。我们表明,对速率方程模型进行仔细的分叉分析会产生(i)对已研究的物理现象的更深入了解,以及(ii)发现新的动力学效应,例如多脉冲励磁性,不同的不稳定性,分叉的级联,多重稳定性,实际上,通常被视为独立的混沌过渡和突然的过渡实际上是通过称为组织中心的特殊点在逻辑上连接成一致的分叉网络的。这种理论上的分叉分析具有预测能力,这与各种参数和动力学多样性的实验测量结果非常吻合。虽然它正在处理光注入激光器的特定系统,但我们的工作构成了一般而言,对非线性物理系统的理解和建模是最先进的。 (c)2005年由Elsevier B.V.

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