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Renormalisation group calculation of correlation functions for the 2D random bond Ising and Potts models

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arxiv hep-th/9501017 v1 pith:4FBB7326 submitted 1995-01-07 hep-th cond-mathep-lat

classification hep-thcond-mathep-lat
keywords correlationcriticalisingmodelpottsexponentfunctionmodels
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We find the cross-over behavior for the spin-spin correlation function for the 2D Ising and 3-states Potts model with random bonds at the critical point. The procedure employed is the renormalisation approach of the perturbation series around the conformal field theories representing the pure models. We obtain a crossover in the amplitude for the correlation function for the Ising model which doesn't change the critical exponent, and a shift in the critical exponent produced by randomness in the case of the Potts model. A comparison with numerical data is discussed briefly.

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  1. Coupled minimal models revisited II: Constraints from permutation symmetry

    hep-th 2024-12 accept novelty 7.0 of 10

    For coupled large-m minimal models with N=5,6,7, every permutation-charged current below spin 10 acquires an anomalous dimension, so the IR fixed points show no extended chiral algebra in that range.

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