Unified treatment of synchronization patterns in generalized networks with higher-order, multilayer, and temporal interactions

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作者
Yuanzhao Zhang
Vito Latora
Adilson E. Motter
机构
[1] Cornell University,Center for Applied Mathematics
[2] Northwestern University,Department of Physics and Astronomy
[3] Queen Mary University of London,School of Mathematical Sciences
[4] Universitá di Catania and INFN,Dipartimento di Fisica ed Astronomia
[5] The Alan Turing Institute,Northwestern Institute on Complex Systems
[6] The British Library,undefined
[7] Complexity Science Hub Vienna (CSHV),undefined
[8] Northwestern University,undefined
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When describing complex interconnected systems, one often has to go beyond the standard network description to account for generalized interactions. Here, we establish a unified framework to simplify the stability analysis of cluster synchronization patterns for a wide range of generalized networks, including hypergraphs, multilayer networks, and temporal networks. The framework is based on finding a simultaneous block diagonalization of the matrices encoding the synchronization pattern and the network topology. As an application, we use simultaneous block diagonalization to unveil an intriguing type of chimera states that appear only in the presence of higher-order interactions. The unified framework established here can be extended to other dynamical processes and can facilitate the discovery of emergent phenomena in complex systems with generalized interactions.
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