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Domain-growth kinetics for the Q-state Potts model in two and three dimensions

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Abstract

We present new simulations of the domain-growth kinetics for the Q-state Potts model in two and three dimensions. The time dependence of the average grain radius R̄ can be described by R̄Btn, where B is a temperature-dependent constant. In two dimensions, we find n=0.49±0.02 for a range of Q values from 2 to 48. This value of n is obtained from very long simulations on lattices up to size 10002 and is in contrast to our earlier estimates for n which were less than (1/2 (n0.41±0.01) for large Q. In three dimensions on lattices of size 1003, we find that n=0.48±0.04 if early-time data are excluded from the fit to the kinetic data but smaller if the entire data set is used. The grain-size distribution for several values of Q in both two and three dimensions is also determined and compared with our results for grain growth in real polycrystalline materials. © 1988 The American Physical Society.
Original languageEnglish
Pages (from-to)4752-4760
Number of pages9
JournalPhysical Review B
Volume38
Issue number7
DOIs
StatePublished - Jan 1 1988
Externally publishedYes

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