Calculation of the shift exponent for the two layer three state Potts model using the transfer matrix method

Abstract

A finite-size scaling approach based on the transfer matrix method is developed to calculate the critical temperature and critical exponent of the symmetric and the asymmetric two-layer three-state Potts Models. For similar intralayer interactions our calculation of the shift exponent φ confirm some scaling arguments which predict φ = γ, where γ is the susceptibility exponent. For unequal intralayer interactions we have obtained φ = 0.5 which differs from the prediction φ = γ / 2 of a generalized mean-field theory.

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