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石墨烯莫尔超晶格中具有可调陈数的陈绝缘体态

Chern Insulator States with Tunable Chern Numbers in a Graphene Moiré Superlattice.

作者信息

Wang Shaoxin, Zhang Zuocheng, Li Hongyuan, Sanborn Collin, Zhao Wenyu, Wang Siqi, Watanabe Kenji, Taniguchi Takashi, Crommie Michael F, Chen Guorui, Wang Feng

机构信息

Department of Physics, University of California at Berkeley, Berkeley, California 94720, United States.

Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.

出版信息

Nano Lett. 2024 Jun 12;24(23):6838-6843. doi: 10.1021/acs.nanolett.3c05145. Epub 2024 Jun 2.

Abstract

Moiré superlattices, constituted by two-dimensional materials, demonstrate a variety of strongly correlated and topological phenomena including correlated insulators, superconductivity, and integer/fractional Chern insulators. In the realm of topological nontrivial Chern insulators within specific moiré superlattices, previous studies usually observe a single Chern number at a given filling factor in a device. Here we present the observation of gate-tunable Chern numbers within the Chern insulator state of an ABC-stacked trilayer graphene/hexagonal boron nitride moiré superlattice device. Near quarter filling, the moiré superlattice exhibits spontaneous valley polarization and distinct ferromagnetism associated with the Chern insulator states over a range of the displacement field. Surprisingly we find a transition of the Chern number from = 3 to 4 as the displacement field is increased. Our observation of gate-tunable correlated Chern insulators suggests new ways to control and manipulate topological states in a moiré superlattice device.

摘要

由二维材料构成的莫尔超晶格展现出各种强关联和拓扑现象,包括关联绝缘体、超导性以及整数/分数陈绝缘体。在特定莫尔超晶格内的拓扑非平凡陈绝缘体领域,以往研究通常在器件的给定填充因子下观测到单一的陈数。在此,我们展示了在一个ABC堆叠的三层石墨烯/六方氮化硼莫尔超晶格器件的陈绝缘体状态内对栅极可调陈数的观测。在接近四分之一填充时,莫尔超晶格在一定范围的位移场中展现出自发谷极化以及与陈绝缘体状态相关的明显铁磁性。令人惊讶的是,我们发现随着位移场增加,陈数从C = 3转变为4。我们对栅极可调关联陈绝缘体的观测为在莫尔超晶格器件中控制和操纵拓扑态提供了新方法。

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