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This article is cited in 13 scientific papers (total in 13 papers)
CONDENSED MATTER
Phase transitions and the magnetic properties of the Potts model with four spin states on a hexagonal lattice in low magnetic fields
M. K. Ramazanov, A. K. Murtazaev, M. A. Magomedov, M. K. Mazagaeva Amirkhanov Institute of Physics, Dagestan Federal Research Center, Russian Academy of Sciences,
Makhachkala, 367003 Russia
Abstract:
Phase transitions and the magnetic properties of the two-dimensional Potts model with the four spin states on a hexagonal lattice in low magnetic fields are studied using the replica exchange algorithm of the Monte Carlo method. The studies are performed in the magnetic field range of $0.0 \leqslant H \leqslant 3.5$ with a step of $0.5$. For this $H$ range, the magnetic structures of the ground state are determined. It is found that the first-order phase transition occurs in the whole magnetic field range under study, except for $H = 1.5$, at which the second-order phase transition takes place. In the framework of such model, it is demonstrated that the applied magnetic field can lead to a change in the order of the phase transition.
Received: 20.10.2021 Revised: 25.10.2021 Accepted: 25.10.2021
Citation:
M. K. Ramazanov, A. K. Murtazaev, M. A. Magomedov, M. K. Mazagaeva, “Phase transitions and the magnetic properties of the Potts model with four spin states on a hexagonal lattice in low magnetic fields”, Pis'ma v Zh. Èksper. Teoret. Fiz., 114:11 (2021), 762–767; JETP Letters, 114:11 (2021), 693–698
Linking options:
https://www.mathnet.ru/eng/jetpl6565 https://www.mathnet.ru/eng/jetpl/v114/i11/p762
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