Energy analysis of magnetic structural states of the Potts model

M. Ramazanov, A. Murtazaev, M. Magomedov, D. Kurbanova, K. Ramazanov, M. Hizriev
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Abstract

Based on the Wang-Landau algorithm, the Monte Carlo method was used to perform an energy analysis of the magnetic structures of the ground state of the two-dimensional Potts model with the number of spin states $q=4$ on a triangular lattice, taking into account the exchange interactions of the first $J_1$ and second $J_2$ nearest neighbors. The studies were carried out for the value of the interaction of the second nearest neighbors in the interval $-2.0 \leq J_2 \leq 0.0$. The magnetic structures of the ground state are determined for different values of the interaction of the second nearest neighbors. It is found that a change in the magnitude of the interaction of the second nearest neighbors in this model leads to a change in the magnetic ordering.
波茨模型磁结构状态的能量分析
基于Wang-Landau算法,考虑第一$J_1$和第二$J_2$近邻的交换相互作用,利用蒙特卡罗方法对三角形晶格上具有自旋态$q=4$个数的二维Potts模型基态的磁结构进行了能量分析。这些研究是为在$-2.0 \leq J_2 \leq 0.0$区间内第二近邻的相互作用值而进行的。根据第二近邻相互作用的不同值,确定了基态的磁结构。我们发现,在该模型中,第二近邻相互作用的大小的变化会导致磁有序的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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