We propose a generalized framework for the study of voter models in complex networks at the heterogeneous mean-field (HMF) level that (i) yields a unified picture for existing copy/invasion processes and (ii) allows for the introduction of further heterogeneity through degree-selectivity rules. In the context of the HMF approximation, our model is capable of providing straightforward estimates for central quantities such as the exit probability and the consensus/fixation time, based on the statistical properties of the complex network alone. The HMF approach has the advantage of being readily applicable also in those cases in which exact solutions are difficult to work out. Finally, the unified formalism allows one to understand previously ...
For models whose evolution takes place on a network it is often necessary to augment the mean-field ...
We study the behavior of a generalized consensus dynamics on a temporal network of interactions, the...
We study the dynamics of the voter and Moran processes running on top of complex network substrates ...
We propose a generalized framework for the study of voter models in complex networks at the heteroge...
We propose a generalized framework for the study of voter models in complex networks at the heteroge...
We propose a generalized framework for the study of voter models in complex networks at th...
This Chapter presents a generalized model of consensus formation, which is able to encompass all pre...
This Chapter presents a generalized model of consensus formation, which is able to encompass all pre...
We propose a new analytical method to study stochastic, binary-state models on complex networks. Mov...
We present a detailed investigation of the behavior of the nonlinear q-voter model for opinion dynam...
We propose a new analytical method to study stochastic, binary-state models on complex networks. Mov...
We study the dynamics of the voter and Moran processes running on top of complex network substrates ...
We study the dynamics of the voter and Moran processes running on top of complex network substrates ...
For models whose evolution takes place on a network it is often necessary to augment the mean-field ...
For models whose evolution takes place on a network it is often necessary to augment the mean-field ...
For models whose evolution takes place on a network it is often necessary to augment the mean-field ...
We study the behavior of a generalized consensus dynamics on a temporal network of interactions, the...
We study the dynamics of the voter and Moran processes running on top of complex network substrates ...
We propose a generalized framework for the study of voter models in complex networks at the heteroge...
We propose a generalized framework for the study of voter models in complex networks at the heteroge...
We propose a generalized framework for the study of voter models in complex networks at th...
This Chapter presents a generalized model of consensus formation, which is able to encompass all pre...
This Chapter presents a generalized model of consensus formation, which is able to encompass all pre...
We propose a new analytical method to study stochastic, binary-state models on complex networks. Mov...
We present a detailed investigation of the behavior of the nonlinear q-voter model for opinion dynam...
We propose a new analytical method to study stochastic, binary-state models on complex networks. Mov...
We study the dynamics of the voter and Moran processes running on top of complex network substrates ...
We study the dynamics of the voter and Moran processes running on top of complex network substrates ...
For models whose evolution takes place on a network it is often necessary to augment the mean-field ...
For models whose evolution takes place on a network it is often necessary to augment the mean-field ...
For models whose evolution takes place on a network it is often necessary to augment the mean-field ...
We study the behavior of a generalized consensus dynamics on a temporal network of interactions, the...
We study the dynamics of the voter and Moran processes running on top of complex network substrates ...