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◆ Journal of the American Chemical Society2025-12-25· Monolayer

Perpendicular Néel Vector Detection of Monolayer Collinear Antiferromagnets with Spin-Layer Coupling

Li Deng, Fei Wang, Xiang Yin, Junwei Tong, Yanzhao Wu, X. G. Zhang

原始摘要(英文原文)· Original abstract
The precise detection of a perpendicular Néel vector in collinear antiferromagnetic (AFM) materials has long been expected for advancing two-dimensional AFM spintronics. Here, we proposed the perpendicular Néel vector detection using the layer Hall effect in collinear antiferromagnets down to the monolayer limit. Through materials screening, the Co 2 S 2 is identified as a prototypical AFM monolayer with the spin-layer coupling and perpendicular magnetic anisotropy. Thanks to the electrically engineered layer-locked band edges and Berry curvatures from spin-layer coupling, a sizable layer-polarized anomalous Hall conductivity of σ xy up to ∼110 S/cm is obtained in monolayer Co 2 S 2 . Intriguingly, the sign of σ xy changes when the Néel vector is reversed, providing an efficient route for detecting the AFM order. Moreover, the achievement of the Néel vector detection via the layer Hall effect is further demonstrated in altermagnetic monolayer Ca(CoN) 2 . The present findings open an avenue to explore the Néel vector detection for atomic-scale AFM materials and spintronic devices.
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Perpendicular Néel Vector Detection of Monolayer Collinear Antiferromagnets with Spin-Layer Coupling — 科研速览 Science Skim