量子霍尔效应
凝聚态物理
范德瓦尔斯力
异质结
日耳曼
物理
量子力学
电子
硅烯
石墨烯
分子
作者
Xiao-Jing 晓晶 Dong 董,Chang-Wen 昌文 Zhang 张
标识
DOI:10.1088/1674-1056/ad4bbd
摘要
Abstract Valley-polarized quantum anomalous Hall effect (VQAHE), combined nontrivial band topology with valleytronics, is of importance for both fundamental sciences and emerging applications. However, the experimental realization of this property is challenging. Here, by using first-principles calculations and modal analysis, we predict a mechanism of producing VQAHE in two-dimensional ferromagnetic van der Waals germanene/MnI 2 heterostructure. This heterostructure exhibits both valley anomalous Hall effect and VQAHE due to the joint effects of magnetic exchange effect and spin–orbital coupling with the aid of anomalous Hall conductance and chiral edge state. Moreover interestingly, through the electrical modulation of ferroelectric polarization state in In 2 Se 3 , the germanene/MnI 2 /In 2 Se 3 heterostructure can undergo reversible switching from a semiconductor to a metallic behavior. This work offers a guiding advancement for searching for VQAHE in ferromagnetic van der Waals heterostructures and exploiting energy-efficient devices based on the VQAHE.
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