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Noncollinear and noncoplanar magnetic order in the extended Hubbard model on anisotropic triangular lattice

机译:各向异性三角格上扩展Hubbard模型中的非共线和非共面磁阶

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摘要

Motivated by the importance of noncollinear and noncoplanar magnetic phases in determining various electrical properties in magnets, we investigate the magnetic phase diagram of the extended Hubbard model on an anisotropic triangular lattice. We map out the ground-state phase diagram within a mean-field scheme that treats collinear, noncollinear, and noncoplanar phases on equal footing. In addition to the standard ferromagnet and 120° antiferromagnet states, we find the four-sublattice flux, the 3Q noncoplanar, and the noncollinear charge-ordered states to be stable at specific values of filling fraction n. Inclusion of a nearest-neighbor Coulomb repulsion leads to intriguing spin-charge-ordered phases. The most notable of these are the collinear and noncollinear magnetic states at n = 2/3, which occur together with a pinball-liquid-like charge order. Our results demonstrate that the elementary single-orbital extended Hubbard model on a triangular lattice hosts unconventional spin-charge ordered phases, which are similar to those reported in more complex and material-specific electronic Hamiltonians.
机译:由于非共线和非共面磁相在确定磁体中各种电性能的重要性的驱使下,我们研究了各向异性三角晶格上扩展Hubbard模型的磁相图。我们在均场方案中绘制了基态相图,该均值方案在相等的基础上处理共线,非共线和非共面相位。除了标准的铁磁体和120°反铁磁体状态,我们还发现四子晶格通量,3Q非共面和非共线电荷有序状态在填充分数n的特定值下是稳定的。包含最近邻库仑排斥力会导致有趣的自旋电荷有序相。这些中最值得注意的是在n = 2/3时的共线和非共线磁性态,它们与弹子状液体状电荷顺序同时出现。我们的结果表明,三角形晶格上的基本单轨道扩展Hubbard模型具有非常规的自旋电荷有序相,这与在更复杂且特定于材料的电子哈密顿量中报道的相类似。

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  • 来源
    《Physical review》 |2016年第19期|195110.1-195110.9|共9页
  • 作者

    Kanika Pasrija; Sanjeev Kumar;

  • 作者单位

    Indian Institute of Science Education and Research (IISER) Mohali, Sector 81, SAS Nagar, Manauli PO 140 306, India;

    Indian Institute of Science Education and Research (IISER) Mohali, Sector 81, SAS Nagar, Manauli PO 140 306, India;

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