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Synchronization of chimera states in a multiplex system of phase oscillators with adaptive couplings

机译:具有自适应耦合的阶段振荡器多路复用系统中嵌合状态的同步

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摘要

We study the interaction of chimera states in multiplex two-layer systems, where each layer represents a network of interacting phase oscillators with adaptive couplings. A feature of this study is the consideration of synchronization processes for a wide range of chimeras with essentially different properties, which are achieved due to the use of different types of coupling adaptation within isolated layers. We study the effect of forced synchronization of chimera states under unidirectional action between layers. This process is accompanied not only by changes in the frequency characteristics of the oscillators, but also by the transformation of the structure of interactions within the slave layer that become close to the properties of the master layer of the system. We show that synchronization close to identical is possible, even in the case of interaction of chimeras with essentially different structural properties (number and size of coherent clusters) formed by means of a relatively large parameter mismatch between the layers. In the case of mutual action of the layers in chimera states, we found a number of new scenarios of the multiplex system behavior along with those already known, when identical or different chimeras appear in both layers. In particular, we have shown that a fairly weak interlayer coupling can lead to suppression of the chimera state when one or both layers of the system demonstrate an incoherent state. On the contrary, a strong interlayer coupling provides a complete synchronization of the layer dynamics, accompanied by the appearance of multicluster states in the system's layers. Published by AIP Publishing.
机译:我们研究了嵌合区状态在多路复用双层系统中的相互作用,其中每个层表示具有自适应耦合的交互相位振荡器网络。该研究的一个特征是考虑到各种嵌合体的同步过程,其具有基本上不同的性质,这是由于在隔离层内使用不同类型的耦合适应而实现的。我们研究了嵌合品状态强制同步在层之间单向行动下的效果。该过程不仅伴随着振荡器的频率特性的变化,而且还通过改变从属层内的相互作用的变换,这靠近系统的主层的属性。我们表明,即使在嵌合体与通过层之间的相对大的参数不匹配形成的基本上不同的结构特性(相干簇的数量和尺寸)的基本不同的结构特性(相干簇的数量和尺寸)的相互作用的情况下,也可以实现接近相同的同步。在嵌合区域中的层相互作用的情况下,我们发现多路复用系统行为的许多新场景以及已经知道的那些已经知道的那些,当两个层中出现相同或不同的嵌合体时。特别地,我们已经表明,当系统的一个或两个层表现出不连贯状态时,相当弱的层间耦合可以导致抑制嵌合状态。相反,强的中间层耦合提供了层动态的完全同步,伴随了系统层中的多板状态的外观。通过AIP发布发布。

著录项

  • 来源
    《Chaos》 |2018年第2期|共11页
  • 作者

    Kasatkin D. V; Nekorkin V. I;

  • 作者单位

    RAS Inst Appl Phys 46 Ulyanov St Nizhnii Novgorod 603950 Russia;

    RAS Inst Appl Phys 46 Ulyanov St Nizhnii Novgorod 603950 Russia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

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