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Role of multistability in te transition to chaotic phase synchronization

机译:多重稳定性在过渡到混沌相位同步中的作用

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摘要

In this paper we describe the transition to phase synchronization for systems of coupled nonlinear oscillators that individually follow the Feigenbaum route to chaos. A nested structure of phase synchronized regions of different attractor families is observed. With this structure, the transition to nonsynchronous behavior is determined by the loss of stability for the most stable synchronous mode. It is shown that the appearance of hyperchaos and the transition from lag synchronization to phase synchronization are related to the merging of chaotic attractors from different families. Numerical examples using Rossler systems and model maps are given.
机译:在本文中,我们描述了耦合非线性振荡器系统的相位同步过渡,这些非线性振荡器分别遵循Feigenbaum路径到达混沌。观察到了不同吸引子族的相位同步区域的嵌套结构。使用这种结构,过渡到非同步行为取决于最稳定的同步模式的稳定性损失。结果表明,超混沌的出现和从滞后同步到相位同步的过渡与来自不同家族的混沌吸引子的合并有关。给出了使用Rossler系统和模型图的数值示例。

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