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Prog. Theor. Phys. Vol. 62 No. 6 (1979) pp. 1573-1583

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Finite Size Effects in the Critical Dynamics of the Kinetic Ising Model

M. C. Yalabik and J. D. Gunton*

Physics Department, Middle East Technical University, Ankara
*Physics Department, Temple University, Philadelphia, Pa. 19122

(Received August 17, 1979)

Abstract:

The time constant which characterizes the critical slowing down of the kinetic Ising model is studied as a function of system size for n×n lattices with periodic boundary conditions, for n from two to ten. In particular, it is shown that the behavior of this time constant at the temperature at which the specific heat exhibits a maximum is consistent with Suzuki's finite size dynamical scaling theory and yields a dynamical critical exponent of z≃2.


URL : http://ptp.ipap.jp/link?PTP/62/1573/
DOI : 10.1143/PTP.62.1573

[ Full Text PDF : FREE ACCESS (934K) ] Citation:


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Citing Article(s) :

  1. Progress of Theoretical Physics Vol. 68 No. 2 (1982) pp. 493-507 :
    Finite-Size Scaling Approach to the Kinetic Ising Model
    Hiroshi Takano