Phase transitions of cellular automata

From MaRDI portal
Publication:3646414

DOI10.1007/BF01309255zbMath1174.82316MaRDI QIDQ3646414

Wolfgang Kinzel

Publication date: 21 November 2009

Published in: [https://portal.mardi4nfdi.de/entity/Q3185716 Zeitschrift f�r Physik B Condensed Matter] (Search for Journal in Brave)




Related Items

Limit theorems for the nonattractive Domany-Kinzel modelFrom stochastic partial difference equations to stochastic cellular automata through the ultra-discretizationOverview: PCA Models and IssuesPhase Transitions of Cellular AutomataSpatio-temporal intermittency in coupled map latticesScaling behavior of the directed percolation universality classBoundary conditions and phase transitions in neural networks. Theoretical resultsFlux-conserving directed percolationCritical dynamics of one-dimensional irreversible systemsAn equal-time correlation function for directed percolationEvolutionary potential games on latticesThe field theory approach to percolation processesUNIVERSAL SCALING BEHAVIOR OF NON-EQUILIBRIUM PHASE TRANSITIONSAre damage spreading transitions generically in the universality class of directed percolation?Critical growth phenomena in cellular automataInfinite numbers of absorbing states: critical behaviorFrom equilibrium spin models to probabilistic cellular automataEpidemic spreading with long-range infections and incubation timesCellular Automata with Random Memory and Its ImplementationsTime-dependent perturbation theory for nonequilibrium lattice modelsInfinite-range mean-field percolation: Transfer matrix study of longitudinal correlation lengthOn damage-spreading transitionsNon-equilibrium phase transitions with long-range interactionsLocal persistence in the directed percolation universality classInfluence of quenched disorder on discontinuous absorbing phase transitionBaxter-Guttman-Jensen conjecture for power series in directed percolation problemCriticality in cellular automataIs there a sharp phase transition for deterministic cellular automata?



Cites Work