凝聚态物理
霍尔效应
磁化
物理
磁各向异性
热霍尔效应
磁场
铁磁性
自旋霍尔效应
对称性破坏
自旋极化
电子
量子力学
作者
R. D. Gonzalez Betancourt,Jan Zubáč,Rafael González‐Hernández,Kevin Geishendorf,Z. Šobáň,G. Springholz,K. Olejník,Libor Šmejkal,Jairo Sinova,T. Jungwirth,Sebastian T. B. Goennenwein,Andy Thomas,Helena Reichlová,Jakub Železný,Dominik Kriegner
标识
DOI:10.1103/physrevlett.130.036702
摘要
The anomalous Hall effect, commonly observed in metallic magnets, has been established to originate from the time-reversal symmetry breaking by an internal macroscopic magnetization in ferromagnets or by a noncollinear magnetic order. Here we observe a spontaneous anomalous Hall signal in the absence of an external magnetic field in an epitaxial film of MnTe, which is a semiconductor with a collinear antiparallel magnetic ordering of Mn moments and a vanishing net magnetization. The anomalous Hall effect arises from an unconventional phase with strong time-reversal symmetry breaking and alternating spin polarization in real-space crystal structure and momentum-space electronic structure. The anisotropic crystal environment of magnetic Mn atoms due to the nonmagnetic Te atoms is essential for establishing the unconventional phase and generating the anomalous Hall effect.
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