论文标题
有限尺寸自适应动力网络中的异质成核
Heterogeneous nucleation in finite size adaptive dynamical networks
论文作者
论文摘要
平衡和非平衡系统中的相变在自然科学中起着重要作用。在动态网络中,相转换组织了耦合动力单元的集体行为的定性变化。自适应动态网络具有随着时间的变化而变化,与节点的动态状态共同发展。在这封信中,我们显示了在有限尺寸的异质相振荡器的有限尺寸自适应网络中出现的两个不同的一阶非平衡相变。根据内部频率分布中缺陷的性质,我们观察到突然的单步过渡到完全同步或更逐渐的多步过渡。该观察结果与异质成核具有惊人的相似之处。我们开发了一种平均场方法,以研究适应性和淋巴结异质性之间的相互作用,并描述多簇状态的动力学及其在确定相变特征中的作用。我们的工作提供了一个理论框架,用于研究适应性和淋巴结异质性之间的相互作用。
Phase transitions in equilibrium and nonequilibrium systems play a major role in the natural sciences. In dynamical networks, phase transitions organize qualitative changes in the collective behavior of coupled dynamical units. Adaptive dynamical networks feature a connectivity structure that changes over time, co-evolving with the nodes' dynamical state. In this Letter, we show the emergence of two distinct first-order nonequilibrium phase transitions in a finite size adaptive network of heterogeneous phase oscillators. Depending on the nature of defects in the internal frequency distribution, we observe either an abrupt single-step transition to full synchronization or a more gradual multi-step transition. This observation has a striking resemblance to heterogeneous nucleation. We develop a mean-field approach to study the interplay between adaptivity and nodal heterogeneity and describe the dynamics of multicluster states and their role in determining the character of the phase transition. Our work provides a theoretical framework for studying the interplay between adaptivity and nodal heterogeneity.