paper

Behavior of susceptible-infected-susceptible epidemics on heterogeneous networks with saturation

arXiv:cond-mat/0402065 · doi:10.1103/PhysRevE.69.066105

Abstract

We investigate saturation effects in susceptible-infected-susceptible (SIS) models of the spread of epidemics in heterogeneous populations. The structure of interactions in the population is represented by networks with connectivity distribution ,including scale-free(SF) networks with power law distributions . Considering cases where the transmission of infection between nodes depends on their connectivity, we introduce a saturation function which reduces the infection transmission rate across an edge going from a node with high connectivity . A mean field approximation with the neglect of degree-degree correlation then leads to a finite threshold for SF networks with . We also find, in this approximation, the fraction of infected individuals among those with degree for close to . We investigate via computer simulation the contact process on a heterogeneous regular lattice and compare the results with those obtained from mean field theory with and without neglect of degree-degree correlations.

6 figures