Nonequilibrium transitions in complex networks: A model of social interaction
- 26 February 2003
- journal article
- Published by American Physical Society (APS) in Physical Review E
- Vol. 67 (2), 026120
- https://doi.org/10.1103/physreve.67.026120
Abstract
We analyze the nonequilibrium order-disorder transition of Axelrod's model of social interaction in several complex networks. In a small-world network, we find a transition between an ordered homogeneous state and a disordered state. The transition point is shifted by the degree of spatial disorder of the underlying network, the network disorder favoring ordered configurations. In random scale-free networks the transition is only observed for finite size systems, showing system size scaling, while in the thermodynamic limit only ordered configurations are always obtained. Thus, in the thermodynamic limit the transition disappears. However, in structured scale-free networks, the phase transition between an ordered and a disordered phase is restored.Keywords
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This publication has 22 references indexed in Scilit:
- Scale-free topology of e-mail networksPhysical Review E, 2002
- Email networks and the spread of computer virusesPhysical Review E, 2002
- Comment on “Ising model on a small world network”Physical Review E, 2002
- Evolution of networksAdvances in Physics, 2002
- Statistical mechanics of complex networksReviews of Modern Physics, 2002
- The web of human sexual contactsNature, 2001
- Small-world phenomena in physics: the Ising modelJournal of Physics A: General Physics, 2000
- On the properties of small-world network modelsZeitschrift für Physik B Condensed Matter, 2000
- Emergence of Scaling in Random NetworksScience, 1999
- Collective dynamics of ‘small-world’ networksNature, 1998