Akimenko S S, Gorbunov V A, Myshlyavtsev A V, Myshlyavtseva M D, Podgornyi S O
Department of Chemistry and Chemical Engineering, Omsk State Technical University, Mira Ave. 11, Omsk 644050, Russia.
J Phys Condens Matter. 2024 Mar 14;36(23). doi: 10.1088/1361-648X/ad2f56.
This paper examines the effect of finite attractive and repulsive interactions on the self-assembly of triangular-shaped particles on a triangular lattice. The ground state analysis of the lattice model has revealed an infinite sequence of ordered structures, a phenomenon referred to as the 'devil's staircase' of phase transitions. The model has been studied at finite temperatures using both the transfer-matrix and tensor renormalization group methods. The concurrent use of these two methods lends credibility to the obtained results. It has been demonstrated that the initial ordered structures of the 'devil's staircase' persist at non-zero temperatures. Further increase of the attraction between particles or a decrease of the temperature induces the appearance of subsequent ordered structures of the 'devil's staircase'. The corresponding phase diagram of the model has been calculated. The phase behavior of our model agrees qualitatively with the phase behavior of trimesic acid adsorption layer on single crystal surfaces.
本文研究了有限吸引和排斥相互作用对三角形晶格上三角形粒子自组装的影响。晶格模型的基态分析揭示了一系列无限的有序结构,这一现象被称为相变的“魔鬼阶梯”。该模型已在有限温度下使用转移矩阵和张量重整化群方法进行了研究。这两种方法的同时使用为所得结果提供了可信度。结果表明,“魔鬼阶梯”的初始有序结构在非零温度下持续存在。粒子间吸引力的进一步增加或温度的降低会导致“魔鬼阶梯”后续有序结构的出现。已计算出该模型相应的相图。我们模型的相行为与单晶表面上均苯三甲酸吸附层的相行为在定性上是一致的。