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点阵上 J1-J2 海森堡模型的集团平均场理论研究。

Cluster mean-field theory study of J1-J2 Heisenberg model on a square lattice.

机构信息

Department of Physics, Renmin University of China, 100872 Beijing, People's Republic of China.

出版信息

J Phys Condens Matter. 2014 Mar 19;26(11):115601. doi: 10.1088/0953-8984/26/11/115601. Epub 2014 Mar 3.

Abstract

We study the spin-1/2 J1-J2 Heisenberg model on a square lattice using the cluster mean-field theory. We find a rapid convergence of phase boundaries with increasing cluster size. By extrapolating the cluster size L to infinity, we obtain accurate phase boundaries J(c1)(2) ≈ 0.42 (between the Néel antiferromagnetic phase and non-magnetic phase), and J(c2)(2) ≈ 0.59 (between non-magnetic phase and the collinear antiferromagnetic phase). Our results support the second-order phase transition at J(c1)(2) and the first-order one at J(c2)(2). For the spin-anisotropic J1-J2 model, we present its finite temperature phase diagram and demonstrate that the non-magnetic state is unstable towards the first-order phase transition under intermediate spin anisotropy.

摘要

我们使用团簇平均场理论研究了方晶格上的自旋-1/2 J1-J2 海森堡模型。我们发现随着团簇尺寸的增加,相界迅速收敛。通过将团簇尺寸 L 外推到无穷大,我们得到了准确的相界 J(c1)(2) ≈ 0.42(在奈尔反铁磁相和非磁相之间)和 J(c2)(2) ≈ 0.59(在非磁相和共线反铁磁相之间)。我们的结果支持在 J(c1)(2)处的二级相变和在 J(c2)(2)处的一级相变。对于各向异性自旋 J1-J2 模型,我们给出了它的有限温度相图,并证明在中间自旋各向异性下,非磁态对一级相变不稳定。

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