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同宿稳定性。

Basin stability for chimera states.

机构信息

Physics and Applied Mathematics Unit, Indian Statistical Institute, Kolkata, 700108, India.

Faculty of Natural Sciences and Mathematics, University of Maribor, Koroška cesta 160, SI-2000, Maribor, Slovenia.

出版信息

Sci Rep. 2017 May 25;7(1):2412. doi: 10.1038/s41598-017-02409-5.

Abstract

Chimera states, namely complex spatiotemporal patterns that consist of coexisting domains of spatially coherent and incoherent dynamics, are investigated in a network of coupled identical oscillators. These intriguing spatiotemporal patterns were first reported in nonlocally coupled phase oscillators, and it was shown that such mixed type behavior occurs only for specific initial conditions in nonlocally and globally coupled networks. The influence of initial conditions on chimera states has remained a fundamental problem since their discovery. In this report, we investigate the robustness of chimera states together with incoherent and coherent states in dependence on the initial conditions. For this, we use the basin stability method which is related to the volume of the basin of attraction, and we consider nonlocally and globally coupled time-delayed Mackey-Glass oscillators as example. Previously, it was shown that the existence of chimera states can be characterized by mean phase velocity and a statistical measure, such as the strength of incoherence, by using well prepared initial conditions. Here we show further how the coexistence of different dynamical states can be identified and quantified by means of the basin stability measure over a wide range of the parameter space.

摘要

在一个耦合相同振荡器的网络中,研究了嵌合体状态,即由共存的空间相干和非相干动力学域组成的复杂时空模式。这些引人入胜的时空模式最初在非局部耦合相振荡器中被报道,并且表明这种混合类型的行为仅在非局部和全局耦合网络中特定的初始条件下发生。自发现以来,初始条件对嵌合体状态的影响一直是一个基本问题。在本报告中,我们研究了初始条件对嵌合体状态以及非相干和相干状态的鲁棒性。为此,我们使用了与吸引域体积有关的基区稳定性方法,并以非局部和全局耦合时滞麦卡锡-格拉斯振荡器为例。以前已经表明,可以通过使用准备好的初始条件,通过平均相位速度和统计度量(例如非相干强度)来表征嵌合体状态的存在。在这里,我们进一步展示了如何通过基区稳定性测量来识别和量化不同动力学状态的共存,并且该测量适用于广泛的参数空间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cc3/5445089/f5590b942759/41598_2017_2409_Fig1_HTML.jpg

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