Gómez Albarracín F A, Rosales H D
Instituto de Física de Líquidos y Sistemas Biológicos, CONICET, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, 1900 La Plata, Argentina.
Departamento de Física, FCE, UNLP, La Plata, Argentina.
J Phys Condens Matter. 2021 Apr 23;33(18). doi: 10.1088/1361-648X/abf19c.
We present a study of the low temperature magnetic phases of the classicalmodel with third nearest neighbor interactions on the honeycomb lattice at the maximally frustrated point under an external magnetic field by extensive Monte Carlo simulations. We focus on the characterization of the emergent low temperature phases, which are a direct consequence of the unusually high numbers of spins per plaquette in the model. Specifically, we show that, since thermal fluctuations partially lift the ground-state degeneracy and select the most collinear states, the selected states are those with the highest number of 'antiferromagnetic pairs' (AFp) compatible with the external magnetic field. These AFp are formed in such a way that they maximize the degeneracy of the selected submanifold of ground states. Moreover, two collinear pseudoplateaux emerge at= 1/3 and= 2/3. To characterize the magnetization process, we employ Monte Carlo simulations and calculate relevant order parameters to construct the complete temperature vs magnetic field phase diagram.
我们通过广泛的蒙特卡罗模拟,对在外部磁场下处于最大受挫点的蜂窝晶格上具有第三近邻相互作用的经典模型的低温磁相进行了研究。我们专注于对出现的低温相进行表征,这些低温相是该模型中每个格点自旋数量异常高的直接结果。具体而言,我们表明,由于热涨落部分解除了基态简并并选择了最共线的状态,所选状态是那些与外部磁场兼容的“反铁磁对”(AFp)数量最多的状态。这些AFp以这样一种方式形成,即它们使所选基态子流形的简并度最大化。此外,在(h = 1/3)和(h = 2/3)处出现了两个共线的赝平台。为了表征磁化过程,我们采用蒙特卡罗模拟并计算相关序参量,以构建完整的温度与磁场相图。