Numerical study of the three-state Ashkin-Teller model with competing dynamics

Prosper Ndizeye, F. Hontinfinde, B. Kounouhewa, S. Bekhechi
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引用次数: 4

Abstract

An open ferromagnetic Ashkin-Teller model with spin variables 0, ±1 is studied by standard Monte Carlo simulations on a square lattice in the presence of competing Glauber and Kawasaki dynamics. The Kawasaki dynamics simulates spin-exchange processes that continuously flow energy into the system from an external source. Our calculations reveal the presence, in the model, of tricritical points where first order and second order transition lines meet. Beyond that, several self-organized phases are detected when Kawasaki dynamics become dominant. Phase diagrams that comprise phase boundaries and stationary states have been determined in the model parameters’ space. In the case where spin-phonon interactions are incorporated in the model Hamiltonian, numerical results indicate that the paramagnetic phase is stabilized and almost all of the self-organized phases are destroyed.
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具有竞争动力学的三态Ashkin-Teller模型的数值研究
采用标准蒙特卡罗模拟方法,研究了一个自旋变量为0,±1的开放铁磁Ashkin-Teller模型。川崎动力学模拟了自旋交换过程,该过程连续地从外部源向系统输送能量。我们的计算显示,在模型中,一阶和二阶过渡线相交的三临界点的存在。除此之外,当川崎动力学成为主导时,检测到几个自组织相。在模型参数空间中确定了相边界和定态相图。在模型哈密顿量中加入自旋声子相互作用的情况下,数值结果表明顺磁相稳定,几乎所有的自组织相都被破坏。
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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来源期刊
Central European Journal of Physics
Central European Journal of Physics 物理-物理:综合
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