论文标题
双Moiré超级晶格中的对称性断裂和异常电导率
Symmetry breaking and anomalous conductivity in a double moiré superlattice
论文作者
论文摘要
通过堆叠三层原子薄的二维材料,可以通过层间扭曲或晶格不匹配来实现双重摩尔超晶格。在这种新颖的结构中,成分层的原子重建可以对小扭曲角度的晶格对称性和电子结构进行重大修改。在这里,我们采用导电原子力显微镜(CAFM)来研究扭曲的三层石墨烯中的对称性断裂和局部电性能。我们观察到清晰的双Moiré超级晶格,在整个样品上都有两个不同的摩尔期。在大型莫伊尔的相邻域,当前的旋转对称性表现为两倍或六倍,表明微妙的对称性破裂超出了刚性模型。此外,在较大的Moiré的“ A-A”堆叠位点出现异常电流,与先前对扭曲的双层石墨烯的观察结果相矛盾。这两种行为都可以通过原子重建来理解,我们还表明,扭曲石墨烯样品的CAFM信号由尖端 - 晶烯接触电阻支配,该电阻映射了扭曲石墨烯和金属尖端的局部工作函数。我们的结果揭示了CAFM是一种有效的探针,可在新颖的Moiré超级晶格中可视化原子重建和对称性破裂,这可以为基于扭曲的范德华异构建体提供探索和操纵更多异国情调的量子状态的新见解。
A double moiré superlattice can be realized by stacking three layers of atomically thin two-dimensional materials with designer interlayer twisting or lattice mismatches. In this novel structure, atomic reconstruction of constituent layers could introduce significant modifications to the lattice symmetry and electronic structure at small twist angles. Here, we employ conductive atomic force microscopy (cAFM) to investigate symmetry breaking and local electrical properties in twisted trilayer graphene. We observe clear double moiré superlattices with two distinct moire periods all over the sample. At neighboring domains of the large moiré, the current exhibit either two- or six-fold rotational symmetry, indicating delicate symmetry breaking beyond the rigid model. Moreover, an anomalous current appears at the 'A-A' stacking site of the larger moiré, contradictory to previous observations on twisted bilayer graphene. Both behaviors can be understood by atomic reconstruction, and we also show that the cAFM signal of twisted graphene samples is dominated by the tip-graphene contact resistance that maps the local work function of twisted graphene and the metallic tip qualitatively. Our results unveil cAFM is an effective probe for visualizing atomic reconstruction and symmetry breaking in novel moiré superlattices, which could provide new insights for exploring and manipulating more exotic quantum states based on twisted van der Waals heterostructures.