Potsdam Institute for Climate Impact Research, Telegrafenberg A, 31, 14473 Potsdam, Germany.
Chaos. 2021 Jul;31(7):073131. doi: 10.1063/5.0055835.
We study various relay synchronization scenarios in a three-layer network, where the middle (relay) layer is a single node, i.e., a hub. The two remote layers consist of non-locally coupled rings of FitzHugh-Nagumo oscillators modeling neuronal dynamics. All nodes of the remote layers are connected to the hub. The role of the hub and its importance for the existence of chimera states are investigated in dependence on the inter-layer coupling strength and inter-layer time delay. Tongue-like regions in the parameter plane exhibiting double chimeras, i.e., chimera states in the remote layers whose coherent cores are synchronized with each other, and salt-and-pepper states are found. At very low intra-layer coupling strength, when chimera states do not exist in single layers, these may be induced by the hub. Also, the influence of the dilution of links between the remote layers and the hub upon the dynamics is investigated. The greatest effect of dilution is observed when links to the coherent domain of the chimeras are removed.
我们研究了三层网络中各种中继同步场景,其中中间(中继)层是单个节点,即集线器。远程两层由非局部耦合的 FitzHugh-Nagumo 振荡器环组成,用于模拟神经元动力学。远程层的所有节点都连接到集线器。研究了集线器的作用及其对奇异态存在的重要性,这取决于层间耦合强度和层间时滞。在参数平面中发现了舌状区域,表现出双奇异,即在远程层中存在奇异态,其相干核彼此同步,以及盐和胡椒状态。在非常低的层内耦合强度下,当奇异态不存在于单层中时,它们可能会被集线器诱导。还研究了远程层与集线器之间链路的稀释对动力学的影响。当去除与奇异相干域的链接时,稀释的影响最大。