A van der Waals antiferromagnetic topological insulator with weak interlayer magnetic coupling

Author:

Hu ChaoweiORCID,Gordon Kyle N.,Liu Pengfei,Liu Jinyu,Zhou XiaoqingORCID,Hao Peipei,Narayan Dushyant,Emmanouilidou Eve,Sun Hongyi,Liu Yuntian,Brawer Harlan,Ramirez Arthur P.,Ding LeiORCID,Cao HuiboORCID,Liu Qihang,Dessau DanORCID,Ni NiORCID

Abstract

AbstractMagnetic topological insulators (TI) provide an important material platform to explore quantum phenomena such as quantized anomalous Hall effect and Majorana modes, etc. Their successful material realization is thus essential for our fundamental understanding and potential technical revolutions. By realizing a bulk van der Waals material MnBi4Te7 with alternating septuple [MnBi2Te4] and quintuple [Bi2Te3] layers, we show that it is ferromagnetic in plane but antiferromagnetic along the c axis with an out-of-plane saturation field of ~0.22 T at 2 K. Our angle-resolved photoemission spectroscopy measurements and first-principles calculations further demonstrate that MnBi4Te7 is a Z2 antiferromagnetic TI with two types of surface states associated with the [MnBi2Te4] or [Bi2Te3] termination, respectively. Additionally, its superlattice nature may make various heterostructures of [MnBi2Te4] and [Bi2Te3] layers possible by exfoliation. Therefore, the low saturation field and the superlattice nature of MnBi4Te7 make it an ideal system to investigate rich emergent phenomena.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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