We study by analytical methods and large scale simulations a dynamical model for the spreading of epidemics in complex networks. In networks with exponentially bounded connectivity we recover the usual epidemic behavior with a threshold defining a critical point below that the infection prevalence is null. On the contrary, on a wide range of scale-free networks we observe the absence of an epidemic threshold and its associated critical behavior. This implies that scale-free networks are prone to the spreading and the persistence of infections whatever spreading rate the epidemic agents might possess. These results can help understanding computer virus epidemics and other spreading phenomena on communication and social networks
Abstract. We study the spreading of a disease on top of structured scale-free networks recently intr...
We study the spreading of a disease on top of structured scale-free networks recently introduced. By...
4 pages, 4 figures, final versionWe study the effect of the connectivity pattern of complex networks...
We study by analytical methods and large scale simulations a dynamical model for the spreading of ep...
We study by analytical methods and large scale simulations a dynamical model for the spreading of ep...
The Internet has a very complex connectivity recently modeled by the class of scale-free networks. T...
The Internet has a very complex connectivity recently modeled by the class of scale-free networks. T...
The Internet has a very complex connectivity recently modeled by the class of scale-free networks. T...
Abstract. We present a detailed analytical and numerical study for the spreading of infections with ...
We present a detailed analytical and numerical study for the spreading of infections with acquired ...
We present a detailed analytical and numerical study for the spreading of infections with acquired i...
We study the effect of the connectivity pattern of complex networks on the propagation dynamics of e...
We study the effect of the connectivity pattern of complex networks on the propagation dynamics of e...
This thesis studies dynamics and control of epidemic spreading in complex networks especially scale-...
This thesis studies dynamics and control of epidemic spreading in complex networks especially scale-...
Abstract. We study the spreading of a disease on top of structured scale-free networks recently intr...
We study the spreading of a disease on top of structured scale-free networks recently introduced. By...
4 pages, 4 figures, final versionWe study the effect of the connectivity pattern of complex networks...
We study by analytical methods and large scale simulations a dynamical model for the spreading of ep...
We study by analytical methods and large scale simulations a dynamical model for the spreading of ep...
The Internet has a very complex connectivity recently modeled by the class of scale-free networks. T...
The Internet has a very complex connectivity recently modeled by the class of scale-free networks. T...
The Internet has a very complex connectivity recently modeled by the class of scale-free networks. T...
Abstract. We present a detailed analytical and numerical study for the spreading of infections with ...
We present a detailed analytical and numerical study for the spreading of infections with acquired ...
We present a detailed analytical and numerical study for the spreading of infections with acquired i...
We study the effect of the connectivity pattern of complex networks on the propagation dynamics of e...
We study the effect of the connectivity pattern of complex networks on the propagation dynamics of e...
This thesis studies dynamics and control of epidemic spreading in complex networks especially scale-...
This thesis studies dynamics and control of epidemic spreading in complex networks especially scale-...
Abstract. We study the spreading of a disease on top of structured scale-free networks recently intr...
We study the spreading of a disease on top of structured scale-free networks recently introduced. By...
4 pages, 4 figures, final versionWe study the effect of the connectivity pattern of complex networks...