Nonequilibrium Dynamics and Aging in the Three--Dimensional Ising Spin Glass Model

Abstract

The low temperature dynamics of the three dimensional Ising spin glass in zero field with a discrete bond distribution is investigated via MC simulations. The thermoremanent magnetization is found to decay algebraically and the temperature dependent exponents agree very well with the experimentally determined values. The nonequilibrium autocorrelation function C(t,tw) shows a crossover at the waiting (or aging) time tw from algebraic quasi-equilibrium decay for times tw to another, faster algebraic decay for tw with an exponent similar to one for the remanent magnetization.

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