The effects of white noise and global coupling strength on the maximum degree of synchronization in complex networks are explored. We perform numerical simulations of generic oscillator models with both linear and non-linear coupling functions on a broad spectrum of network topologies. The oscillator models include the Fitzhugh-Nagumo model, the Izhikevich model and the Kuramoto phase oscillator model. The network topologies range from regular, random and highly modular networks to scale-free and small-world networks, with both directed and undirected edges. We then study the dependency of the maximum degree of synchronization on the global coupling strength and the noise intensity. We find a general scaling of the synchronizability, and qu...
We introduce a model to study the effect of degree-frequency correlations on synchronization in netw...
Maximally synchronizable networks (MSNs) are acyclic directed networks that maximize synchronizabili...
For a class of coupled limit cycle oscillators, we give a condition on a linear coupling operator th...
The effects of white noise and global coupling strength on the maximum degree of synchronization in ...
We investigate how correlations between the diversity of the connectivity of networks and the dynami...
Despite the great attention devoted to the study of phase oscillators on complex networks in the las...
We investigate how correlations between the diversity of the connectivity of networks and ...
We investigate how correlations between the diversity of the connectivity of networks and the dynami...
In this paper we study phase synchronization in random complex networks of coupled periodic oscillat...
We study the dynamics of network-coupled phase oscillators in the presence of coupling frustration. ...
Synchronisation ist einer der bekanntesten dynamischen ZustSynchrony is one of the most common dynam...
Models of coupled oscillator networks play an important role in describing collective synchronizatio...
We explore the effect of correlations between the in and out degrees of random directed networks on ...
We explore the effect of correlations between the in and out degrees of random directed networks on ...
We study synchronization dynamics of a population of pulse-coupled oscillators. In particular, we fo...
We introduce a model to study the effect of degree-frequency correlations on synchronization in netw...
Maximally synchronizable networks (MSNs) are acyclic directed networks that maximize synchronizabili...
For a class of coupled limit cycle oscillators, we give a condition on a linear coupling operator th...
The effects of white noise and global coupling strength on the maximum degree of synchronization in ...
We investigate how correlations between the diversity of the connectivity of networks and the dynami...
Despite the great attention devoted to the study of phase oscillators on complex networks in the las...
We investigate how correlations between the diversity of the connectivity of networks and ...
We investigate how correlations between the diversity of the connectivity of networks and the dynami...
In this paper we study phase synchronization in random complex networks of coupled periodic oscillat...
We study the dynamics of network-coupled phase oscillators in the presence of coupling frustration. ...
Synchronisation ist einer der bekanntesten dynamischen ZustSynchrony is one of the most common dynam...
Models of coupled oscillator networks play an important role in describing collective synchronizatio...
We explore the effect of correlations between the in and out degrees of random directed networks on ...
We explore the effect of correlations between the in and out degrees of random directed networks on ...
We study synchronization dynamics of a population of pulse-coupled oscillators. In particular, we fo...
We introduce a model to study the effect of degree-frequency correlations on synchronization in netw...
Maximally synchronizable networks (MSNs) are acyclic directed networks that maximize synchronizabili...
For a class of coupled limit cycle oscillators, we give a condition on a linear coupling operator th...