Litcius/Paper detail

MnPS<sub>3</sub> spin-flop transition-induced anomalous Hall effect in graphite flake <i>via</i> van der Waals proximity coupling

Ying Zhang, Wenhui Wang, Meng Huang, Ping Liu, Guojing Hu, Chao Feng, Xueyan Lei, Meng Gu, Hongxin Yang, Kaihui Liu, Bin Xiang, Yalin Lu

2020Nanoscale21 citationsDOI

Abstract

Detection of the antiferromagnetic (AFM) state is an important issue for the application of two-dimensional (2D) antiferromagnets in spintronics, and interfacial exchange coupling is a highly efficient means to detect AFM order. However, there are no experimental reports of AFM state detection in van der Waals heterostructures, based on which 2D AFM spintronics can be developed. In this paper, we report a spin flop transition (SFT)-induced anomalous Hall effect in a heterostructure of MnPS3/graphite flake (GF) through van der Waals proximity coupling. The scaling behavior study and theoretical calculations confirm that the SFT in AFM MnPS3 can generate momentum-space nonzero Berry curvature integration in the adjacent GF. Our work opens a path for the realization of AFM state detection through the proximity effect in a stacking structure, thereby promoting the application of 2D antiferromagnets in future 2D spintronics.

Topics & Concepts

van der Waals forceSpintronicsCondensed matter physicsAntiferromagnetismCoupling (piping)Materials scienceGraphiteSpin (aerodynamics)FrustrationNanotechnologyChemical physicsChemistryPhysicsFerromagnetismMoleculeQuantum mechanicsThermodynamicsMetallurgyComposite materialGraphene research and applicationsQuantum and electron transport phenomenaPhysics of Superconductivity and Magnetism