Synchronization processes in populations of identical networked oscillators are the focus of intense studies in physical, biological, technological, and social systems. Here we analyze the stability of the synchronization of a network of oscillators coupled through different variables. Under the assumption of an equal topology of connections for all variables, the master stability function formalism allows assessing and quantifying the stability properties of the synchronization manifold when the coupling is transferred from one variable to another. We report on the existence of an optimal coupling transference that maximizes the stability of the synchronous state in a network of Rössler-like oscillators. Finally, we design an experimental ...
We propose a methodology to analyze synchronization in an ensemble of diffusively coupled multistabl...
Abstract — The emergence of synchronization in a network of coupled oscillators is a pervasive topic...
Synchronization in chaotic oscillatory systems has a wide array of applications in biology, physics ...
Synchronization processes in populations of identical networked oscillators are the focus of intense...
Synchronization processes in populations of identical networked oscillators are the focus of intense...
Maximally synchronizable networks (MSNs) are acyclic directed networks that maximize synchronizabili...
Maximally synchronizable networks (MSNs) are acyclic directed networks that maximize synchronizabili...
The structure of many real-world systems is best captured by networks consisting of several interact...
The structure of many real-world systems is best captured by networks consisting of several interact...
We study different aspects of synchronization in networks of coupled oscillators: We adapt a prev...
International audienceThe study of synchronization in coupled genetic networks is a very challenging...
We propose a methodology to analyze synchronization in an ensemble of diffusively coupled multistabl...
Synchronization is an important phenomenon which plays a central role in the function or dysfunction...
We study the dynamics of network-coupled phase oscillators in the presence of coupling frustration. ...
Synchronization is an important phenomenon which plays a central role in the function or dysfunction...
We propose a methodology to analyze synchronization in an ensemble of diffusively coupled multistabl...
Abstract — The emergence of synchronization in a network of coupled oscillators is a pervasive topic...
Synchronization in chaotic oscillatory systems has a wide array of applications in biology, physics ...
Synchronization processes in populations of identical networked oscillators are the focus of intense...
Synchronization processes in populations of identical networked oscillators are the focus of intense...
Maximally synchronizable networks (MSNs) are acyclic directed networks that maximize synchronizabili...
Maximally synchronizable networks (MSNs) are acyclic directed networks that maximize synchronizabili...
The structure of many real-world systems is best captured by networks consisting of several interact...
The structure of many real-world systems is best captured by networks consisting of several interact...
We study different aspects of synchronization in networks of coupled oscillators: We adapt a prev...
International audienceThe study of synchronization in coupled genetic networks is a very challenging...
We propose a methodology to analyze synchronization in an ensemble of diffusively coupled multistabl...
Synchronization is an important phenomenon which plays a central role in the function or dysfunction...
We study the dynamics of network-coupled phase oscillators in the presence of coupling frustration. ...
Synchronization is an important phenomenon which plays a central role in the function or dysfunction...
We propose a methodology to analyze synchronization in an ensemble of diffusively coupled multistabl...
Abstract — The emergence of synchronization in a network of coupled oscillators is a pervasive topic...
Synchronization in chaotic oscillatory systems has a wide array of applications in biology, physics ...