从分数量子反常霍尔 Smectics 到极性 Smectic Metals:电子液晶秩序与相关拓扑平坦带中拓扑秩序之间的非微观相互作用。

Hongyu Lu, Han-Qing Wu, Bin-Bin Chen, Kai Sun, Zi Yang Meng
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引用次数: 0

摘要

对称性破缺阶不仅可以相互竞争,还可以相互交织,拓扑阶与对称性破缺阶的相互交织使情况更加引人入胜。这项研究考察了填充ν = 2/3时棋盘格上的典型相关平带模型,我们发现晶格电荷秩序和拓扑秩序之间独特的相互作用产生了两种新的量子态。随着相互作用强度的增加,系统首先从费米液体态过渡到 FQAH smectic(FQAHS)态,在这种态中,FQAH 拓扑有序与 smectic 电荷有序协同共存,基态退变性增大,有趣的是,霍尔电导率为 σxy = ν = 2/3,与带折叠或掺杂情况不同。进一步增加相互作用强度后,系统会发生另一种量子相变,演变成极谱金属(PSM)态。这种新出现的 PSM 是一种各向异性的非费米液体,其条纹间的隧道效应无关紧要,而在每个条纹内部则具有金属性。与 FQAHS 和传统的铁电阶不同,这种 PSM 自发地打破了两重旋转对称性,从而产生了非零电偶极矩和铁电阶。除了奇异的基态,我们还利用大规模数值模拟来研究低能激发和热力学特性。我们发现不可压缩的 FQAHS 状态的起始温度由磁-质子模式决定,这也与非极性铁电阶的起始温度相吻合。在此起始温度之上,PSM 状态存在于中间温度体系。虽然 PSM 和 FQAHS 之间的 T = 0 量子相变是一阶的,但 FQAHS-PSM 的热相变可能是连续的。我们期待在未来的实验中能够获得奇异态和热相变的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From fractional quantum anomalous Hall smectics to polar smectic metals: nontrivial interplay between electronic liquid crystal order and topological order in correlated topological flat bands.

Symmetry-breaking orders can not only compete with each other, but also be intertwined, and the intertwined topological and symmetry-breaking orders make the situation more intriguing. This work examines the archetypal correlated flat band model on a checkerboard lattice at fillingν=2/3and we find that the unique interplay between smectic charge order and topological order gives rise to two novel quantum states. As the interaction strength increases, the system first transitions from a Fermi liquid (FL) into FQAH smectic (FQAHS) state, where the topological order coexists cooperatively with smectic charge order with enlarged ground-state degeneracy and interestingly, the Hall conductivity isσxy=ν=2/3, different from the band-folding or doping scenarios. Further increasing the interaction strength, the system undergoes another quantum phase transition and evolves into a polar smectic metal (PSM) state. This emergent PSM is an anisotropic non-Fermi liquid, whose interstripe tunneling is irrelevant while it is metallic inside each stripe. Different from the FQAHS and conventional smectic orders, this PSM spontaneously breaks the two-fold rotational symmetry, resulting in a nonzero electric dipole moment and ferroelectric order. In addition to the exotic ground states, large-scale numerical simulations are also used to study low-energy excitations and thermodynamic characteristics. We find that the onset temperature of the incompressible FQAHS state, which also coincides with the onset of non-polar smectic order, is dictated by the magneto-roton modes. Above this onset temperature, the PSM state exists at an intermediate-temperature regime. Although theT = 0 quantum phase transition between PSM and FQAHS is first order, the thermal FQAHS-PSM transition could be continuous. We expect the features of the exotic states and thermal phase transitions could be accessed in future experiments.

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