arXiv · cond-mat/0109024
Static critical behavior in the inactive phase of the pair contact process
Abstract
Steady state properties in the absorbing phase of the $1d$ pair contact process (PCP) model are investigated. It is shown that, in typical absorbing states (reached by the system's dynamic rules), the density of isolated particles, $ρ_1$, approaches a stationary value which depends on the annihilation probability ($p$); the deviation from its 'natural' value at criticality, $ρ_1^{nat}$, follows a power law: $ρ_1^{nat}-ρ_1 \sim (p-p_c)^{β_1}$ for $p>p_c$. Monte Carlo simulations yield $β_1=0.81$. A cluster approximation is developed for this model, qualitatively confirming the numerical results and predicting $β_1=1$. The singular behavior of the isolated particles density in the inactive phase is explained using a phenomenological approach.
Explore related subjects
Keep this discovery
M. C. Marques, M. A. Santos, J. F. F. Mendes. 2001-09-03. Static critical behavior in the inactive phase of the pair contact process. https://doi.org/10.1103/physreve.65.016111
Cite the original work for its findings. Save a collection to share your selection of sources.