Phase Transitions in Low-Dimensional Disordered Potts Models

The Monte Carlo method is used to study phase transitions in disordered two-dimensional Potts models in which disorder is realized as nonmagnetic impurities. The temperature dependences of the thermodynamic parameters have been calculated for specific heat C , susceptibility χ, and fourth-order Bind...

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Veröffentlicht in:Physics of the solid state 2020-05, Vol.62 (5), p.851-855
Hauptverfasser: Babaev, A. B., Murtazaev, A. K.
Format: Artikel
Sprache:eng
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Zusammenfassung:The Monte Carlo method is used to study phase transitions in disordered two-dimensional Potts models in which disorder is realized as nonmagnetic impurities. The temperature dependences of the thermodynamic parameters have been calculated for specific heat C , susceptibility χ, and fourth-order Binder cumulants in the dependence on spin concentration p . The calculations have been performed for the system with periodic boundary conditions. The systems with linear sizes L × L = N , L = 20–160 are considered. The incorporation of nonmagnetic impurities to a spin system is shown to possibly lead to a change of the first-order phase transition to a second-order phase transition. The problem of the universality classes of the critical behavior of low-dimensional diluted systems is discussed.
ISSN:1063-7834
1090-6460
DOI:10.1134/S1063783420050042