论文标题
石墨烯设备中量子厅边缘通道的不存在边缘重建
Absence of edge reconstruction for quantum Hall edge channels in graphene devices
论文作者
论文摘要
拓扑绝缘体中的电子边缘状态已成为物理学的主要范式。最古老的和主要的示例是沿垂直磁场下二维电子气体(2DEG)沿二维电子气体(2DEGS)传播的量子大厅(QH)边缘通道的示例。然而,尽管进行了多种运输和扫描探针技术进行了40年的深入研究,但事实证明,QH边缘通道的真实空间结构成像,这主要是由于半导体中大多数2DEG的埋藏性。在这里,我们表明,石墨烯中的QH边缘状态仅限于晶体边缘的几个磁长,通过在硝化氢硼硼上执行扫描隧道光谱扫描隧道光谱。这些发现表明,QH边缘状态是由在晶体边缘消失的电子波形的边界条件定义的,从而导致理想的一维手性通道,没有静电重建。我们进一步证明了边缘处均匀的电载体密度,与对非流行上游模式存在的猜想形成鲜明对比。量子霍尔边缘状态的静电重建缺乏对基于石墨烯的系统和其他2D晶体材料中电子和热传输实验的通用性的深刻意义。
Electronic edge states in topological insulators have become a major paradigm in physics. The oldest and primary example is that of quantum Hall (QH) edge channels that propagate along the periphery of two-dimensional electron gases (2DEGs) under perpendicular magnetic field. Yet, despite 40 years of intensive studies using a variety of transport and scanning probe techniques, imaging the real-space structure of QH edge channels has proven difficult, mainly due to the buried nature of most 2DEGs in semiconductors. Here, we show that QH edge states in graphene are confined to a few magnetic lengths at the crystal edges by performing scanning tunneling spectroscopy up to the edge of a graphene flake on hexagonal boron nitride. These findings indicate that QH edge states are defined by boundary conditions of vanishing electronic wavefunctions at the crystal edges, resulting in ideal one-dimensional chiral channels, free of electrostatic reconstruction. We further evidence a uniform charge carrier density at the edges, contrasting with conjectures on the existence of non-topological upstream modes. The absence of electrostatic reconstruction of quantum Hall edge states has profound implications for the universality of electron and heat transport experiments in graphene-based systems and other 2D crystalline materials.