论文标题

通过原子力显微镜探测的石墨烯中断裂对称量子霍尔状态的边缘通道

Edge Channels of Broken-Symmetry Quantum Hall States in Graphene probed by Atomic Force Microscopy

论文作者

Kim, Sungmin, Schwenk, Johannes, Walkup, Daniel, Zeng, Yihang, Ghahari, Fereshte, Le, Son T., Slot, Marlou R., Berwanger, Julian, Blankenship, Steven R., Watanabe, Kenji, Taniguchi, Takashi, Giessibl, Franz J., Zhitenev, Nikolai B., Dean, Cory R., Stroscio, Joseph A.

论文摘要

量子大厅(QH)效应是一种拓扑非平凡的量子阶段,扩展并将其重点放在物理学中拓扑顺序的概念中。受拓扑保护的量子霍尔边缘状态对QH效应至关重要,但成功衡量了。石墨烯中的QH边缘状态具有更丰富的作用,因为石墨烯的区别是其四倍的零能量Landau水平(ZLL),其中对称性通过晶格尺度电位的电子相互作用而损坏,但进行了空间测量。在本报告中,我们使用原子力显微镜(AFM)绘制了包含$ν= 0的石墨烯ZLL的量子霍尔破碎的边缘状态。化学电位的测量可以解决四倍变化ZLL的能量作为磁场的函数,并显示了石墨烯/氮化石墨烯/硼的Moiré超级突然突变势与大磁场中旋转/山谷对称性效应的相互作用。

The quantum Hall (QH) effect, a topologically non-trivial quantum phase, expanded and brought into focus the concept of topological order in physics. The topologically protected quantum Hall edge states are of crucial importance to the QH effect but have been measured with limited success. The QH edge states in graphene take on an even richer role as graphene is distinguished by its four-fold degenerate zero energy Landau level (zLL), where the symmetry is broken by electron interactions on top of lattice-scale potentials but has eluded spatial measurements. In this report, we map the quantum Hall broken-symmetry edge states comprising the graphene zLL at integer filling factors of $ν=0,\pm 1$ across the quantum Hall edge boundary using atomic force microscopy (AFM). Measurements of the chemical potential resolve the energies of the four-fold degenerate zLL as a function of magnetic field and show the interplay of the moiré superlattice potential of the graphene/boron nitride system and spin/valley symmetry-breaking effects in large magnetic fields.

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