One-dimensional Nonequilibrium Kinetic Ising Models with local spin-symmetry breaking: N-component branching annihilation transition at zero branching rate
arXiv:cond-mat/0203419 · doi:10.1103/PhysRevE.66.016127
Abstract
The effects of locally broken spin symmetry are investigated in one dimensional nonequilibrium kinetic Ising systems via computer simulations and cluster mean field calculations. Besides a line of directed percolation transitions, a line of transitions belonging to N-component, two-offspring branching annihilating random-walk class (N-BARW2) is revealed in the phase diagram at zero branching rate. In this way a spin model for N-BARW2 transitions is proposed for the first time.
6 pages, 5 figures included, 2 new tables added, to appear in PRE
References in corpus (3)
Cited by in corpus (4)
- Universality classes in nonequilibrium lattice systems
- Crossovers from parity conserving to directed percolation universality
- Study of the multi-species annihilating random walk transition at zero branching rate - cluster scaling behavior in a spin model
- One-dimensional spin-anisotropic kinetic Ising model subject to quenched disorder