arXiv · cond-mat/9906067
Boundary critical behaviour of two-dimensional random Potts models
Abstract
We consider random q-state Potts models for $3\le q \le 8$ on the square lattice where the ferromagnetic couplings take two values $J_1>J_2$ with equal probabilities. For any q the model exhibits a continuous phase transition both in the bulk and at the boundary. Using Monte Carlo techniques the surface and the bulk magnetizations are studied close to the critical temperature and the critical exponents $β_1$ and $β$ are determined. In the strip-like geometry the critical magnetization profile is investigated with free-fixed spin boundary condition and the characteristic scaling dimension, $β_1/ν$, is calculated from conformal field theory. The critical exponents and scaling dimensions are found monotonously increasing with q. Anomalous dimensions of the relevant scaling fields are estimated and the multifractal behaviour at criticality is also analyzed.
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Gábor Palágyi, Christophe Chatelain, Bertrand Berche, Ferenc Iglói. 1999-06-04. Boundary critical behaviour of two-dimensional random Potts models. https://doi.org/10.1007/s100510050042
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