论文标题
魔术角扭曲双层石墨烯中平坦乐队的可调晶格重建和带宽
Tunable lattice reconstruction and bandwidth of flat bands in magic-angle twisted bilayer graphene
论文作者
论文摘要
层间相互作用与内部晶格失真之间的相互作用会导致略微扭曲的双层石墨烯(TBG)中的结构重建,扭曲角度小于特征角度θc。在实验上,θc被证明非常接近魔法角(θ〜1.05°)。在这项工作中,我们通过使用扫描隧道显微镜(STM)来解决TBG跨魔法角度重建和未结构结构之间的过渡。我们的实验表明,这两个结构在魔术角围绕TBG稳定。通过应用STM尖端脉冲,我们表明这两个结构可以彼此切换,并且可以调节平坦频段的带宽,这在魔法角tbg中的紧密相关状态中起着至关重要的作用。观察到的可调晶格重建和平面带的带宽提供了一个额外的控制旋钮,可以在魔术角附近操纵TBG的奇异电子状态。
The interplay between interlayer van der Waals interaction and intralayer lattice distortion can lead to structural reconstruction in slightly twisted bilayer graphene (TBG) with the twist angle being smaller than a characteristic angle θc. Experimentally, the θc is demonstrated to be very close to the magic angle (θ ~ 1.05°). In this work, we address the transition between reconstructed and unreconstructed structures of the TBG across the magic angle by using scanning tunnelling microscopy (STM). Our experiment demonstrates that both the two structures are stable in the TBG around the magic angle. By applying a STM tip pulse, we show that the two structures can be switched to each other and the bandwidth of the flat bands, which plays a vital role in the emergent strongly correlated states in the magic-angle TBG, can be tuned. The observed tunable lattice reconstruction and bandwidth of the flat bands provide an extra control knob to manipulate the exotic electronic states of the TBG near the magic angle.