Non-universality of aging during phase separation of the two-dimensional long-range Ising model
arXiv:2409.08050 · doi:10.1103/PhysRevLett.133.237102
Abstract
We investigate the aging properties of phase-separation kinetics following quenches from to a finite temperature below of the paradigmatic two-dimensional conserved Ising model with power-law decaying long-range interactions . Physical aging with a power-law decay of the two-time autocorrelation function is observed, displaying a complex dependence of the autocorrelation exponent on . A value of for the corresponding nearest-neighbor model (which is recovered as the limes) is determined. The values of in the long-range regime () are all compatible with . In between, a continuous crossover is visible for with non-universal, -dependent values of . The performed Metropolis Monte Carlo simulations are primarily enabled by our novel algorithm for long-range interacting systems.