Omelchenko Iryna, Provata Astero, Hizanidis Johanne, Schöll Eckehard, Hövel Philipp
Institut für Theoretische Physik, Technische Universität Berlin, Hardenbergstraße 36, 10623 Berlin, Germany.
Institute of Nanoscience and Nanotechnology, National Center for Scientific Research "Demokritos," 15310 Athens, Greece.
Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Feb;91(2):022917. doi: 10.1103/PhysRevE.91.022917. Epub 2015 Feb 23.
Chimera states are complex spatio-temporal patterns that consist of coexisting domains of spatially coherent and incoherent dynamics. This counterintuitive phenomenon was first observed in systems of identical oscillators with symmetric coupling topology. Can one overcome these limitations? To address this question, we discuss the robustness of chimera states in networks of FitzHugh-Nagumo oscillators. Considering networks of inhomogeneous elements with regular coupling topology, and networks of identical elements with irregular coupling topologies, we demonstrate that chimera states are robust with respect to these perturbations and analyze their properties as the inhomogeneities increase. We find that modifications of coupling topologies cause qualitative changes of chimera states: additional random links induce a shift of the stability regions in the system parameter plane, gaps in the connectivity matrix result in a change of the multiplicity of incoherent regions of the chimera state, and hierarchical geometry in the connectivity matrix induces nested coherent and incoherent regions.
嵌合态是复杂的时空模式,由空间相干动力学和非相干动力学共存的区域组成。这种违反直觉的现象最初是在具有对称耦合拓扑的相同振荡器系统中观察到的。能否克服这些限制?为了解决这个问题,我们讨论了FitzHugh-Nagumo振荡器网络中嵌合态的鲁棒性。考虑具有规则耦合拓扑的非均匀元件网络以及具有不规则耦合拓扑的相同元件网络,我们证明了嵌合态对于这些扰动具有鲁棒性,并随着不均匀性的增加分析了它们的性质。我们发现耦合拓扑的修改会导致嵌合态的定性变化:额外的随机链接会导致系统参数平面中稳定区域的移动,连接矩阵中的间隙会导致嵌合态非相干区域多重性的变化,连接矩阵中的分层几何结构会导致嵌套的相干和非相干区域。