论文标题

部分可观测时空混沌系统的无模型预测

Kekulé spiral order in magic-angle graphene: a density matrix renormalization group study

论文作者

Wang, Tianle, Parker, Daniel E., Soejima, Tomohiro, Hauschild, Johannes, Anand, Sajant, Bultinck, Nick, Zaletel, Michael P.

论文摘要

当扭曲的Moiré系统的两个层受到不同程度的应变的约束时,该效果会通过逆扭转角度(例如,魔法角扭曲的双层石墨烯(TBG)的50倍)扩增。 TBG的样品通常具有0.1-0.7%的异质特征,将“平面”频段的带宽增加了多达十倍,将TBG放置在中间耦合方案中。在这里,我们研究了在没有质量的,较大的肾脏肾脏范围的既定范围内的TBG相图(TBG)的相图( $χ= 24576 $),包括所有旋转和山谷的自由度。 041063),打破山谷保护和翻译对称性$ \ hat {t} $,但保留了修改后的翻译对称性$ \ hat {t} $,并使用Moiré-固定相位调制。

When the two layers of a twisted moiré system are subject to different degrees of strain, the effect is amplified by the inverse twist angle, e.g., by a factor of 50 in magic angle twisted bilayer graphene (TBG). Samples of TBG typically have heterostrains of 0.1-0.7%, increasing the bandwidth of the "flat'' bands by as much as tenfold, placing TBG in an intermediate coupling regime. Here we study the phase diagram of TBG in the presence of heterostrain with unbiased, large-scale density matrix renormalization group calculations (bond dimension $χ=24576$), including all spin and valley degrees of freedom. Working at filling $ν= -3$, we find a strain of $0.05\%$ drives a transition from a quantized anomalous Hall insulator into an incommensurate-Kekulé spiral (IKS) phase. This peculiar order, proposed and studied at mean-field level by Kwan et al (PRX 11, 041063), breaks both valley conservation and translation symmetry $\hat{T}$, but preserves a modified translation symmetry $\hat{T}'$ with moiré-incommensurate phase modulation. Even higher strains drive the system to a fully symmetric metal.

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