Impact of network structure on a model of diffusion and competitive interaction
arXiv:1006.4257 · doi:10.1209/0295-5075/94/68009
Abstract
We consider a model in which agents of different species move over a complex network, are subject to reproduction and compete for resources. The complementary roles of competition and diffusion produce a variety of fixed points, whose stability depends on the structure of the underlying complex network. The survival and death of species is influenced by the network degree distribution, clustering, degree-degree correlations and community structures. We found that the invasion of all the nodes by just one species is possible only in Erdos-Renyi and regular graphs, while networks with scale--free degree distribution, as those observed in real social, biological and technological systems, guarantee the co-existence of different species and therefore help enhancing species diversity.
6 pages, 4 figures
References in corpus (7)
- Statistical physics of social dynamics
- Synchronization in complex networks
- Benchmark graphs for testing community detection algorithms
- Reaction-diffusion processes and metapopulation models in heterogeneous networks
- Dynamical Organization of Cooperation in Complex Topologies
- Entropy Rate of Diffusion Processes on Complex Networks
- Network properties, species abundance and evolution in a model of evolutionary ecology