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Correlated Initial Conditions in Directed Percolation

arXiv:cond-mat/9802223 · doi:10.1103/PhysRevE.58.311

Abstract

We investigate the influence of correlated initial conditions on the temporal evolution of a (d+1)-dimensional critical directed percolation process. Generating initial states with correlations <s_i*s_{i+r}>~r^(sigma-d) we observe that the density of active sites in Monte-Carlo simulations evolves as rho(t)~t^kappa. The exponent kappa depends continuously on sigma and varies in the range -beta/nu_{||}<=kappa<=eta. Our numerical results are confirmed by an exact field-theoretical renormalization group calculation.

10 pages, RevTeX, including 5 encapsulated postscript figures