Analysis of cluster explosive synchronization in complex networks
arXiv:1402.5587 · doi:10.1103/PhysRevE.90.062810
Abstract
Correlations between intrinsic dynamics and local topology have become a new trend in the study of synchronization in complex networks. In this paper, we investigate in this paradigm the influence of topology on dynamics of networks made up of second-order Kuramoto oscillators. In particular, based on mean-field calculations, we provide a detailed investigation of the recently reported phenomena of cluster explosive synchronization (CES)[Phys. Rev. Lett. 110, 218701 (2013)], analysing the model in scale-free and small-world networks as a function of several topological properties. We show that, in contrast to scale-free networks, the transition to the synchronous state in small-world structures tends to be continuous as the probability of rewiring increases. These results complement the previous findings regarding CES and also fundamentally deepen the understanding of the interplay between topology and dynamics under the constraint of correlating natural frequencies and local structure.
Accepted in PRE
References in corpus (12)
- Synchronization in complex networks
- Explosive Synchronization Transitions in Scale-free Networks
- Symmetries, Cluster Synchronization, and Isolated Desynchronization in Complex Networks
- Remote synchronization reveals network symmetries and functional modules
- Explosive first-order transition to synchrony in networked chaotic oscillators
- Explosive percolation in scale-free networks
- Hysteretic transitions in the Kuramoto model with inertia
- Basin of Attraction Determines Hysteresis in Explosive Synchronization
- Disorder induces explosive synchronization
- Eigenvalue Decomposition as a Generalized Synchronization Cluster Analysis
- Effects of degree-frequency correlations on network synchronization: universality and full phase-locking
- Networks of noisy oscillators with correlated degree and frequency dispersion
Cited by in corpus (13)
- The Kuramoto model in complex networks
- Explosive transitions in complex networks' structure and dynamics: percolation and synchronization
- Explosive Phenomena in Complex Networks
- Inhibition induced explosive synchronization in multiplex networks
- Delay Regulated Explosive Synchronization in Multiplex Networks
- Effect of assortative mixing in the second-order Kuramoto model
- Collective dynamics in two populations of noisy oscillators with asymmetric interactions
- Multiplexing induced explosive synchronization in Kuramoto oscillators with inertia
- Dynamics of multilayer networks with amplification
- Explosive synchronization transition in a ring of coupled oscillators
- Synchronization of phase oscillators with frequency-weighted coupling
- Low dimensional behaviour of generalized Kuramoto model
- Characterizing correlations and synchronization in collective dynamics