论文标题

过渡金属二甲基化元素莫伊尔杂质的列分激素绝缘子

Nematic excitonic insulator in transition metal dichalcogenide moiré heterobilayers

论文作者

Xie, Ming, Pan, Haining, Wu, Fengcheng, Sarma, Sankar Das

论文摘要

我们研究了电子间库仑相互作用对过渡金属二甲基化金属元素(TMD)Moiré杂波杂质的拓扑相变的影响。我们发现一个列神经激代的绝缘子(NEI)相,它打破了MoiréSuperlattice的三倍旋转对称性,并在Intaylayer隧道隧道较弱时,或者在库仑相互作用不强烈筛选时,可以在AA和AB堆叠的异质层中叠加拓扑相变。 nematicities源自层间隧穿的非平凡空间结构之间的挫败感,这对于拓扑结实带的存在至关重要,与库仑相互作用引起的层间相互作用至关重要,cOULOMB相互作用促进了层中均匀性的均匀性。我们构建了一个统一的有效的两波段模型,该模型捕获频带倒置附近的物理学,并适用于AA和AB堆叠的异质分子。在两波段模型中,NEI阶段与Chern绝缘子阶段之间的竞争可以理解为在增加层间隧道时,$ s $波和$ s $ - 波和$ p $ - 波型激子之间的竞争。

We study the effect of inter-electron Coulomb interactions on the displacement field induced topological phase transition in transition metal dichalcogenide (TMD) moiré heterobilayers. We find a nematic excitonic insulator (NEI) phase that breaks the moiré superlattice's three-fold rotational symmetry and preempts the topological phase transition in both AA and AB stacked heterobilayers when the interlayer tunneling is weak, or when the Coulomb interaction is not strongly screened. The nematicity originates from the frustration between the nontrivial spatial structure of the interlayer tunneling, which is crucial to the existence of the topological Chern band, and the interlayer coherence induced by the Coulomb interaction that favors uniformity in layer pseudo-spin orientations. We construct a unified effective two-band model that captures the physics near the band inversion and applies to both AA and AB stacked heterobilayers. Within the two-band model, the competition between the NEI phase and the Chern insulator phase can be understood as the switching of the energetic order between the $s$-wave and the $p$-wave excitons upon increasing the interlayer tunneling.

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