论文标题

复杂网络中的自组织爆炸性同步:同步炸弹的出现

Self-organized explosive synchronization in complex networks: Emergence of synchronization bombs

论文作者

Arola-Fernández, Lluís, Faci-Lázaro, Sergio, Skardal, Per Sebastian, Boghiu, Emanuel-Cristian, Gómez-Gardeñes, Jesús, Arenas, Alex

论文摘要

我们介绍了同步炸弹的概念,作为大型耦合的异质振荡器网络,这些振荡器的耦合振荡器,这些振荡器在可靠的策略中运行,并通过添加(或删除)一个或几个链接从不连贯到相位锁定(或反之亦然)。在这里,我们通过在由当地规则驱动的竞争性链接 - 渗透过程中优化了全球同步,构建了这些炸弹的自组织和随机版本。我们发现新兴网络结构上的爆炸性指纹,包括频度相关性,分离模式和延迟的渗透阈值。我们表明,这些类似炸弹的过渡既可以在Kuramoto的系统(周期性)和Rössler-混乱 - 振荡器和心脏起搏器细胞模型中进行设计。我们通过结合精确的集体坐标方法和Ott-Antonsen Ansatz来分析库拉莫托案中的过渡。此外,我们研究了主要参数变化下现象的鲁棒性以及模型中最佳噪声的意外影响。我们的结果提出了网络增长的最小自组织机制,以理解和控制自适应生物系统(如大脑和工程型)等自适应生物系统中的爆炸性同步。从理论的角度来看,同步爆炸和由局部结构扰动引起的同步爆炸的出现 - 没有任何全局参数的微调 - 在相同的机械框架下加入了爆炸性同步和渗透。

We introduce the concept of synchronization bombs as large networks of coupled heterogeneous oscillators that operate in a bistable regime and abruptly transit from incoherence to phase-locking (or vice-versa) by adding (or removing) one or a few links. Here we build a self-organized and stochastic version of these bombs, by optimizing global synchrony with decentralized information in a competitive link-percolation process driven by a local rule. We find explosive fingerprints on the emerging network structure, including frequency-degree correlations, disassortative patterns and a delayed percolation threshold. We show that these bomb-like transitions can be designed both in systems of Kuramoto -- periodic -- and Rössler -- chaotic -- oscillators and in a model of cardiac pacemaker cells. We analytically characterize the transitions in the Kuramoto case by combining a precise collective coordinates approach and the Ott-Antonsen ansatz. Furthermore, we study the robustness of the phenomena under changes in the main parameters and the unexpected effect of optimal noise in our model. Our results propose a minimal self-organized mechanism of network growth to understand and control explosive synchronization in adaptive biological systems like the brain and engineered ones like power-grids or electronic circuits. From a theoretical standpoint, the emergence of synchronization explosions and bistability induced by localized structural perturbations -- without any fine-tuning of global parameters -- joins explosive synchronization and percolation under the same mechanistic framework.

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