{ "id": "2403.06162", "version": "v1", "published": "2024-03-10T10:19:59.000Z", "updated": "2024-03-10T10:19:59.000Z", "title": "Nonequilibrium Phase Transition in a 2D Ferromagnetic Spins with Effective Interactions", "authors": [ "Dagne Wordofa Tola", "Chandan Dasgupta", "Mulugeta Bekele" ], "comment": "28 Pages 17 Figures", "categories": [ "cond-mat.stat-mech" ], "abstract": "We investigate nonequilibrium phase transitions (PTs) in a 2D ferromagnetic Ising model on a square lattice with effective interactions via Monte Carlo (MC) based computational algorithms. Possibly, we simplify the generic complexity of energy function describing the system model to manage the algorithms. The importance of accounting for the effective interactions to admit establishing the nature of nonequilibrium PT emphasizes. The existence of an effective parameter $h$ is verified employing mean-field theory, and the self-consistent equations (SCEs) are derived based on the two familiar dynamics$-$Metropolis and Glauber algorithms. The results qualitatively demonstrate that both dynamics estimate the same SCE for $-1