Aging in a Two-Dimensional Ising Model with Dipolar Interactions

Abstract

Aging in a two-dimensional Ising spin model with both ferromagnetic exchange and antiferromagnetic dipolar interactions is established and investigated via Monte Carlo simulations. The behaviour of the autocorrelation function C(t,tw) is analyzed for different values of the temperature, the waiting time tw and the quotient δ=J0/Jd, J0 and Jd being the strength of exchange and dipolar interactions respectively. Different behaviours are encountered for C(t,tw) at low temperatures as δ is varied. Our results show that, depending on the value of δ, the dynamics of this non-disordered model is consistent either with a slow domain dynamics characteristic of ferromagnets or with an activated scenario, like that proposed for spin glasses.

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