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首页> 外文期刊>Journal of Physics. Condensed Matter >Magnetic phase diagram of a spatially anisotropic, frustrated spin-1/2 Heisenberg antiferromagnet on a stacked square lattice
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Magnetic phase diagram of a spatially anisotropic, frustrated spin-1/2 Heisenberg antiferromagnet on a stacked square lattice

机译:堆叠方格上空间各向异性,受挫的自旋1/2 Heisenberg反铁磁体的磁相图

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摘要

The magnetic phase diagram of a spatially anisotropic, frustrated spin-1/2 Heisenberg antiferromagnet on a stacked square lattice is investigated using a second-order spin-wave expansion. The effects of interlayer coupling and the spatial anisotropy on the magnetic ordering of two ordered ground states are explicitly studied. It is shown that with increase in next nearest neighbor frustration the second-order corrections play a significant role in stabilizing the magnetization. We obtain two ordered magnetic phases (Néel and stripe) separated by a paramagnetic disordered phase. Within the second-order spin-wave expansion we find that the width of the disordered phase diminishes with increase in the interlayer coupling or with decrease in spatial anisotropy but it does not disappear. Our obtained phase diagram differs significantly from the phase diagram obtained using linear spin-wave theory.
机译:使用二阶自旋波展开研究了空间各向异性,受挫的自旋1/2 Heisenberg反铁磁体在堆叠方格上的磁相图。明确研究了层间耦合和空间各向异性对两个有序基态的磁有序性的影响。结果表明,随着下一个最近邻居的挫败感的增加,二阶校正在稳定磁化强度方面起着重要作用。我们获得了两个顺磁无序相隔开的有序磁相(Néel和条纹)。在二阶自旋波扩展中,我们发现无序相的宽度随着层间耦合的增加或空间各向异性的减小而减小,但是并没有消失。我们获得的相位图与使用线性自旋波理论获得的相位图明显不同。

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