Non-equilibrium phase transitions in one-dimensional kinetic Ising models
Abstract
A family of nonequilibrium kinetic Ising models, introduced earlier, evolving under the competing effect of spin flips at {\it zero temperature} and nearest neighbour random spin exchanges is further investigated here. By increasing the range of spin exchanges and/or their strength the nature of the phase transition 'Ising-to-active' becomes of (dynamic) mean-field type and a first order tricitical point is located at the Glauber () limit. Corrections to mean-field theory are evaluated up to sixth order in a cluster approximation and found to give good results concerning the phase boundary and the critical exponent of the order parameter which is obtained as .
Cite
@article{arxiv.cond-mat/9504061,
title = {Non-equilibrium phase transitions in one-dimensional kinetic Ising models},
author = {N. Menyhard and G. Odor},
journal= {arXiv preprint arXiv:cond-mat/9504061},
year = {2009}
}
Comments
15 pages, revtex file, figures available at request from odor@r1.atki.kfki.hu in postscript format, submitted to J.Phys.A