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Phase Transitions in the Four-Component Potts Model on a Triangular Lattice

  • 01-07-2024
  • ELECTRICAL AND MAGNETIC PROPERTIES
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Abstract

The article delves into the intricate behavior of phase transitions in the four-component Potts model on a triangular lattice, a significant topic in statistical mechanics. By employing the Wolff algorithm for Monte Carlo simulations, the authors investigate the thermodynamic properties of this model, focusing on energy, heat capacity, magnetic susceptibility, and spontaneous magnetization. The study reveals a weakly pronounced energy jump and a critical temperature of Tc = 1.442(3), consistent with analytical predictions. The results indicate a second-order phase transition, supported by the analysis of Binder cumulants and energy distribution histograms. This work provides valuable insights into the fundamental understanding of phase transitions and has potential applications in condensed matter physics, particularly in the study of adsorption phenomena on lattice structures.

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Title
Phase Transitions in the Four-Component Potts Model on a Triangular Lattice
Authors
A. B. Babaev
A. K. Murtazaev
Publication date
01-07-2024
Publisher
Pleiades Publishing
Published in
Physics of Metals and Metallography / Issue 7/2024
Print ISSN: 0031-918X
Electronic ISSN: 1555-6190
DOI
https://doi.org/10.1134/S0031918X24600672
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