论文标题
互动星网络中的爆炸性过渡
Explosive transitions in interacting star networks
论文作者
论文摘要
我们研究了在恒星网络上相互作用的Stuart-Landau振荡器合奏中向相位同步的过渡。我们观察到,通过在节点动力学中引入频率加权耦合和时间尺度变化,系统表现出一阶爆炸性过渡到相位同步。此外,我们扩展了这项研究,以了解两个耦合星网络的同步性质。在两个恒星的枢纽之间存在对称性(直接)耦合的情况下,我们观察到磁滞宽度首先增加,然后饱和以提高恒星间耦合强度。对于对称断裂(结合)耦合,磁滞宽度首先增加,然后随着巨星间耦合而减小。随着我们进一步增加巨星耦合,过渡逐渐成为二阶。
We study transition to phase synchronization in an ensemble of Stuart-Landau oscillators interacting on a star network. We observe that by introducing frequency weighted coupling and time scale variations in the dynamics of nodes, system exhibits a first order explosive transition to phase synchrony. Further, we extend this study to understand the nature of synchronization in case of two coupled star networks. In presence of symmetry preserving (direct) coupling between the hubs of the two stars, we observe that hysteresis width first increases and then saturates for increasing inter-star coupling strength. For symmetry breaking (conjugate) coupling, the hysteresis width first increases and then decreases with increasing inter-star coupling. As we increase the inter-star coupling further, the transition gradually becomes a second order.