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Quantum magnetic phase transition in square-octagon lattice

机译:八角形晶格中的量子磁性相变

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摘要

Quantum magnetic phase transition in square-octagon lattice was investigated by cellular dynamical mean field theory combining with continuous time quantum Monte Carlo algorithm. Based on the systematic calculation on the density of states, the double occupancy and the Fermi surface evolution of square-octagon lattice, we presented the phase diagrams of this splendid many particle system. The competition between the temperature and the on-site repulsive interaction in the isotropic square-octagon lattice has shown that both antiferromagnetic and paramagnetic order can be found not only in the metal phase, but also in the insulating phase. Antiferromagnetic metal phase disappeared in the phase diagram that consists of the anisotropic parameter λ and the on-site repulsive interaction U while the other phases still can be detected at T = 0.17. The results found in this work may contribute to understand well the properties of some consuming systems that have square-octagon structure, quasi square-octagon structure, such as ZnO.
机译:利用细胞动力学平均场理论,结合连续时间量子蒙特卡洛算法,研究了八角形晶格中的量子磁性相变。在对状态密度,二次占有率和方八角形格的费米面演化进行系统计算的基础上,我们给出了这种出色的多粒子系统的相图。各向同性方八角形晶格中的温度与现场排斥相互作用之间的竞争表明,不仅在金属相中而且在绝缘相中都可以找到反铁磁和顺磁序。在由各向异性参数λ和现场排斥相互作用U组成的相图中,反铁磁性金属相消失了,而其他相仍可以在T = 0.17处检测到。这项工作中发现的结果可能有助于更好地理解某些具有正方形八角形结构,准正方形八角形结构(例如ZnO)的消耗系统的性能。

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