paper

Numerical Study on Aging Dynamics in Ising Spin-Glass Models: Temperature-Change Protocols

arXiv:cond-mat/0001395

Abstract

By means of Monte Carlo simulations on the three-dimensional Ising spin-glass model, we have studied aging phenomena with various temperature()-change protocols. Particularly, a -shift protocol, in which a system is first quenched to and aged for a period at a temperature , and subsequently aged at a new temperature is closely investigated. Most importantly, the mean size of domains, which is extracted from the replica-overlap function, was found to grow monotonically without any appreciable decrease by the -change. We also found the relaxation of energy density and spin auto-correlation function during the -shift process can be explained within the following picture: the dynamics finally crossovers to an isothermal aging of at around after the -change, where is an effective waiting time related with , but in the transient regime , adjustment of the population of thermally active droplets from that at to takes place very slowly. Implications of the results on aging phenomena in other -change protocols such as -cycling and continuous -change with an intermittent stop observed by simulations as well as experiments are discussed.

10 pages, 11 figures, for the Proceedings of the workshop "Frontiers in Magnetism", Kyoto Oct.99

Numerical Study on Aging Dynamics in Ising Spin-Glass Models: Temperature-Change Protocols · wovepaper