论文标题

中心对称系统中的抗铁磁绝缘子

Antiferromagnetic Chern insulator in centrosymmetric systems

论文作者

Ebrahimkhas, Morad, Uhrig, Götz S., Hofstetter, Walter, Hafez-Torbati, Mohsen

论文摘要

如果无法通过空间组的操作来补偿抗磁性Chern绝缘子(AFCI),则可以存在反转转换对电子状态的影响。具有共线磁顺序的AFCI状态已经通过Kane-Mele-Hubbard模型在非中心对称蜂窝结构中实现。在本文中,我们在一个平方晶格模型中证明了共线AFCI的存在,该模型保留了反转对称性。我们的研究依赖于时间反向不变的Harper-Hofstadter-Hobbard模型,该模型通过了第二个最新的跳跃术语扩展,包括自旋轨道耦合和棋盘板的潜力。我们表明,在弱的频段绝缘子和易于$ xy $ $ xy $ plane af mott mott绝缘子的频段绝缘子之间出现了简单的$ z $轴afci。我们的结果与非中心对称Kane-Mele-Hubbard模型获得的结果之间的紧密相似性表明,AFCI是自旋轨道耦合的一般结果和强大的电子相关性,而这些相关性存在于特定模型或晶格结构之外。具有相同相互作用的电子的电子和磁性特性的AFCI有望候选候选电荷距离在Néel温度以下的强磁蓝移,并在较高温度下实现量子异常霍尔效应,以便可能会应用数据处理的应用。

An antiferromagnetic Chern insulator (AFCI) can exist if the effect of the time-reversal transformation on the electronic state cannot be compensated by a space group operation. The AFCI state with collinear magnetic order is already realized in noncentrosymmetric honeycomb structures through the Kane-Mele-Hubbard model. In this paper, we demonstrate the existence of the collinear AFCI in a square lattice model which preserves the inversion symmetry. Our study relies on the time-reversal-invariant Harper-Hofstadter-Hubbard model extended by a next-nearest-neighbor hopping term including spin-orbit coupling and a checkerboard potential. We show that an easy $z$-axis AFCI appears between the band insulator at weak and the easy $xy$-plane AF Mott insulator at strong Hubbard repulsion provided the checkerboard potential is large enough. The close similarity between our results and the results obtained for the noncentrosymmetric Kane-Mele-Hubbard model suggests the AFCI as a generic consequence of spin-orbit coupling and strong electronic correlation which exists beyond a specific model or lattice structure. An AFCI with the electronic and the magnetic properties originating from the same strongly interacting electrons is promising candidate for a strong magnetic blue shift of the charge gap below the Néel temperature and for realizing the quantum anomalous Hall effect at higher temperatures so that applications for data processing become possible.

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