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作 者:区婉颜 陈渊[1] 蒲秋容 OU Wan-yan CHEN Yuan PU Qiu-rong(School of Physics and Electronic Engineering, Guangzhou University, Guangzhou 510006, China)
机构地区:[1]广州大学物理与电子工程学院,广东广州510006
出 处:《广州大学学报(自然科学版)》2016年第5期42-51,共10页Journal of Guangzhou University:Natural Science Edition
基 金:Supported by the National Natural Science Fund of China(10974059)
摘 要:文章研究单离子各向异性影响下的二维正方晶格、自旋为1的阻挫海森堡反铁磁体的基态性质.利用自旋波方法,得到了在零温时该系统的奈尔相和共线相的子晶格磁化强度和基态能,发现了奈尔相-共线相转变的量子临界点依赖于单离子各向异性D以及次近邻反铁磁性耦合J_2与最近邻反铁磁耦合J_1的比值.在经典临界点J_2/J_1=0.5附近,当0≤D/J_1≤0.03时系统存在一个中间无序顺磁相.自旋波的结果表明,在高于J_2/J_1=0.5区域,奈尔相-共线相转变是一级相变,发生在依赖于各向异性的临界线上.The effect of the single-ion anisotropy on the ground-state properties of the spin-1 frustrated Heisenberg antiferromagnet is investigated on a square lattice. The sublattice magnetizations as well as ground-state energies of the system are obtained within the spin-wave method for the Neel and collinear phases at zero temperature. It is found that the quantum critical points for the Neel and collinear phases are dependent on the single1 ion anisotropy D and the ratio of next-nearest-neighbor antiferromagnetie coupling J2 to nearest-neighbor antiferromagnetie coupling J1- Near the classical point J2/J1 = 0.5, there is an intermediate disordered paramagnetic phase for 0 ≤D/J1 ≤0. 03. Our spin-wave results show that a first order phase transition from the Neel phase to the collinear phase occurs at the anisotropy-dependence critical line above J2/J1 = 0. 5.
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