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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Antiferromagnetic chiral spin density wave and strain-induced Chern insulator in the square lattice Hubbard model with frustration
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Antiferromagnetic chiral spin density wave and strain-induced Chern insulator in the square lattice Hubbard model with frustration

机译:令人沮丧的方形格子喧嚣模型中的反铁磁性手性旋转密度波和应变诱导的Chern绝缘体

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摘要

We employ the Hartree-Fock approximation to identify the magnetic ground state of the Hubbard model on a frustrated square lattice. We investigate the phase diagram as a function of the Coulomb repulsion's strength U, and the ratio t'/t between the nearest- and next-nearest-neighbor hoppings t and t'. At half-filling and for a sufficiently large U,an antiferromagnetic chiral spin density wave order with nonzero spin chirality emerges as the ground state in a wide regime of the phase diagram near t'/t =1/2~(1/2), where the Fermi surface is well nested for both (π,π) and (π, 0)/(0, π) wave vectors. This triple-Q chiral phase is sandwiched by a single-Q Neel phase and a double-Q coplanar spin-vortex crystal phase, at smaller and larger t'/t. respectively. The energy spectrum in the chiral spin density wave phase consists of four pairs of degenerate bands. These give rise to two pairs of Dirac cones with the same chirality at the point (π/2, π/2) of the Brillouin zone. We demonstrate that the application of a diagonal strain induces a d_(xy)-wave next-nearest-neighbor hopping which, in turn, opens gaps in the two Dirac cones with opposite masses. As a result, four pairs of well-separated topologically nontrivial bands emerge, and each pair of those contributes with a Chern number ±1. At half-filling, this leads to a zero total Chern number and renders the topologically nontrivial properties observable only in the ac response regime. Instead. We show that at 3/4 filling, the triple-Q chiral phase yields a Chern insulator exhibiting the quantum anomalous Hall effect.
机译:我们采用Hartree-Fock近似,以识别令人沮丧的方形晶格上的Hubbard模型的磁场状态。我们作为Coulomb排斥力的强度U的函数调查相图,以及最近和下邻距离跳动T和T'之间的比率T'/ T。在半填充和足够大的U中,具有非零间旋转手术的反铁磁性手性旋转密度波顺序在T'/ T = 1/2〜(1/2)附近的相位图的宽方面中出现在地面状态下,在fermi表面嵌套(π,π)和(π,0)/(0,π)波矢量。该三Q手性相由单Q Neel相和双Q共型旋转涡旋结晶相夹在一起,处于较小且较大的T'/ T.分别。手性旋转密度波相中的能谱由四对regenerate带组成。这些在布里渊区的点(π/ 2,π/ 2)处产生两对DIRAC锥体,在布里渊区的点(π/ 2,π/ 2)。我们证明了对角线应变的应用引导了D_(XY)-Wave -Wave -Wey邻居跳跃,其又在两个狄拉科锥体中打开间隙。结果,四对分开的分离良好的拓扑非学频带出现,并且每对那些的那些都有助于截止值±1。在半填充时,这导致零总剔除号码,并且仅在交流响应制度中呈现可观察到的拓扑非竞争特性。反而。我们表明,在3/4填充下,三Q手性相产生挖掘绝缘体,表现出量子异常霍尔效应。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第19期|195120.1-195120.13|共13页
  • 作者单位

    CAS Key Laboratory of Theoretical Physics Institute of Theoretical Physics Chinese Academy of Sciences Beijing 100190 China School of Physical Sciences University of Chinese Academy of Sciences Beijing 100049 China;

    CAS Key Laboratory of Theoretical Physics Institute of Theoretical Physics Chinese Academy of Sciences Beijing 100190 China School of Physical Sciences University of Chinese Academy of Sciences Beijing 100049 China;

    CAS Key Laboratory of Theoretical Physics Institute of Theoretical Physics Chinese Academy of Sciences Beijing 100190 China;

    CAS Key Laboratory of Theoretical Physics Institute of Theoretical Physics Chinese Academy of Sciences Beijing 100190 China School of Physical Sciences University of Chinese Academy of Sciences Beijing 100049 China CAS Center for Excellence in Topological Quantum Computation University of Chinese Academy of Sciences Beijing 100049 China;

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