A Study of Magnetic Properties in a 2D Ferromagnetic Nanolattice through Computer Simulation

Nanomaterials (Basel). 2022 Oct 21;12(20):3705. doi: 10.3390/nano12203705.

Abstract

This article investigated the magnetic properties of a 2D nanolattice through computer modeling. A square antidote nanolattice in thin films was considered. For our computer simulation, we used the Heisenberg model. Ferromagnetic phase transition was studied for lattices with pores of various sizes. We determined the Curie temperature based on the finite-dimensional scaling theory. Using Wolf's algorithm, we simulated the behavior of the system. The dependence of the phase transition temperature on the density of spins was found to be power. Using Metropolis' algorithm, we calculated a hysteresis loop for an antidote lattice film. The hysteresis loop narrowed as the pore sizes increased. The dependence of coercive force on the size of the nanolattice obeyed the logarithmic law.

Keywords: 2D nanolattice; antidote lattice; computer simulation; phase transition; thin film.