具有竞争二元相互作用直至第三代近邻的Cayley树上的Potts模型的相图

Sahira Basirudin, M. Rodzhan
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引用次数: 0

摘要

我们有兴趣研究第三近邻的存在是否会对相图的生成产生重大影响。为此,我们在Cayley树上分析了具有长时间竞争二元相互作用J2和J3的Potts模型的相图,直到第三代最近邻居。我们推导了递推方程组,并研究了竞争参数的几个范围内的相图。然后,我们通过对相图进行迭代方案进行数值分析。对于某些非零参数J3,我们发现了周期5,6,9和11的附加相位,以及铁磁,反相,顺磁,反铁磁和调制相位。我们有兴趣研究第三近邻的存在是否会对相图的生成产生重大影响。为此,我们在Cayley树上分析了具有长时间竞争二元相互作用J2和J3的Potts模型的相图,直到第三代最近邻居。我们推导了递推方程组,并研究了竞争参数的几个范围内的相图。然后,我们通过对相图进行迭代方案进行数值分析。对于某些非零参数J3,我们发现了周期5,6,9和11的附加相位,以及铁磁,反相,顺磁,反铁磁和调制相位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phase diagrams of the Potts model on the Cayley tree with competing binary interactions up to the third nearest-neighbour generations
We are interested to investigate whether the presence of the third nearest-neighbour would give any significant effect on the generation of the phase diagrams. For this purpose, we analyze the phase diagrams of the Potts model with prolonged competing binary interactions J2 and J3 on the Cayley tree up to the third nearest-neighbour generations. We derive the recurrence system of equations and investigate the phase diagrams for several ranges of the competing parameters. Then, we conduct a numerical analysis by carrying out an iteration scheme on the phase diagrams. For some non-zero parameter J3, we found the additional phases of period 5, 6, 9, and 11, along with the ferromagnetic, antiphase, paramagnetic, antiferromagnetic and modulated phase.We are interested to investigate whether the presence of the third nearest-neighbour would give any significant effect on the generation of the phase diagrams. For this purpose, we analyze the phase diagrams of the Potts model with prolonged competing binary interactions J2 and J3 on the Cayley tree up to the third nearest-neighbour generations. We derive the recurrence system of equations and investigate the phase diagrams for several ranges of the competing parameters. Then, we conduct a numerical analysis by carrying out an iteration scheme on the phase diagrams. For some non-zero parameter J3, we found the additional phases of period 5, 6, 9, and 11, along with the ferromagnetic, antiphase, paramagnetic, antiferromagnetic and modulated phase.
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