Šimėnas M, Ibenskas A, Tornau E E
Semiconductor Physics Institute, Center for Physical Sciences and Technology, Goštauto 11, LT-01108 Vilnius, Lithuania.
Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Oct;90(4):042124. doi: 10.1103/PhysRevE.90.042124. Epub 2014 Oct 15.
Using Monte Carlo calculations we analyze the order and the universality class of phase transitions into a low-density (honeycomb) phase of a triangular antiferromagnetic three-state Bell-Lavis model. The results are obtained in a whole interval of chemical potential μ corresponding to the honeycomb phase. Our results demonstrate that the phase transitions might be attributed to the three-state Potts universality class for all μ values except for the edges of the honeycomb phase existence. At the honeycomb phase and the low-density gas phase boundary the transitions become of the first order. At another, honeycomb-to-frustrated phase boundary, we observe the approach to the crossover from the three-state Potts to the Ising model universality class. We also obtain the Schottky anomaly in the specific heat close to this edge. We show that the intermediate planar phase, found in a very similar antiferromagnetic triangular Blume-Capel model, does not occur in the Bell-Lavis model.
我们使用蒙特卡罗计算方法,分析了三角反铁磁三态贝尔 - 拉维斯模型向低密度(蜂窝状)相转变的有序性和普适类。结果是在对应于蜂窝状相的化学势μ的整个区间内获得的。我们的结果表明,除了蜂窝状相存在的边缘外,对于所有μ值,相变可能归因于三态Potts普适类。在蜂窝状相和低密度气相边界处,转变变为一级相变。在另一个蜂窝状相到受挫相的边界处,我们观察到从三态Potts到伊辛模型普适类的交叉趋势。我们还在接近该边缘处的比热中获得了肖特基异常。我们表明,在非常相似的反铁磁三角布卢姆 - 卡佩尔模型中发现的中间平面相,在贝尔 - 拉维斯模型中不会出现。