Dynamics of a two-dimensional order-disorder transition

We present results of a Monte Carlo study of the time development of a two-dimensional order-disorder model binary alloy following a quench to low temperature from a disordered, high-temperature state. The behavior is qualitatively quite similar to that seen in a recent study of a three-dimensional...

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Veröffentlicht in:Phys. Rev. B: Condens. Matter; (United States) 1981-07, Vol.24 (1), p.410-418
Hauptverfasser: Sahni, Paramdeep S., Dee, Gregory, Gunton, J. D., Phani, M., Lebowitz, Joel L., Kalos, M.
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Sprache:eng
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Zusammenfassung:We present results of a Monte Carlo study of the time development of a two-dimensional order-disorder model binary alloy following a quench to low temperature from a disordered, high-temperature state. The behavior is qualitatively quite similar to that seen in a recent study of a three-dimensional system. The structure function exhibits a scaling of the form K/sup 2/(t)S(k,t) = G(k/K(t)) where the moment K(t) decreases with time approximately like t/sup -1/2/. If one interprets this moment as being inversely proportional to the domain size, the characteristic domain growth rate is proportional to t/sup -1/2/. Additional insight into this time evolution is obtained from studying the development of the short-range order, as well as from monitoring the growth of a compact ordered domain embedded in a region of opposite order. All these results are consistent with the picture of domain growth as proposed by Lifshitz and by Cahn and Allen.
ISSN:0163-1829
DOI:10.1103/PhysRevB.24.410