Magnetotransport evolution and nonlinear Hall effect in altermagnetic MnTe

Wei Zhou , Zhifeng Xue , Yunxing Li , Nannan Tang , Ye Tao , Dingyong Zhong , Jiawei Luo , Donghui Guo , Huichao Wang

Front. Phys. ››

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Front. Phys. ›› DOI: 10.15302/frontphys.2027.025204
RESEARCH ARTICLE
Magnetotransport evolution and nonlinear Hall effect in altermagnetic MnTe
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Abstract

Hexagonal MnTe is a prototypical semiconducting altermagnet whose properties are heavily influenced by intrinsic disorder, yet how the resulting diverse transport regimes shape its magnetotransport behavior remains to be clarified alongside the role of relativistic spin-orbit coupling (SOC). Here, we present a systematic study of the anisotropic magnetoresistance (AMR), planar Hall effect (PHE), and nonlinear transport in MnTe bulk single crystals. Below the Néel temperature ( TN ~ 304 K), the emergence of high-order harmonics in AMR and PHE within the high-temperature metallic regime reveals the interplay of magnetic order, crystalline symmetry, and SOC. At relatively lower temperatures, the disappearance of higher-order symmetries coincides with a transport crossover into the hopping conduction regime, suggesting that carrier localization diminishes the transport sensitivity to the Fermi-surface topology. In addition, we detect distinct second-order nonlinear Hall signals, providing evidence for a macroscopic inversion-asymmetric response in altermagnetic MnTe. Extending the investigations into the localized regime provides key insights into the subtle role of disorder and SOC in macroscopic charge transport. Our work thus underscores the necessity of exploring magnetotransport across diverse conducting regimes to comprehensively understand altermagnetic properties.

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magnetotransport evolution / nonlinear Hall effect / altermagnets

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Wei Zhou, Zhifeng Xue, Yunxing Li, Nannan Tang, Ye Tao, Dingyong Zhong, Jiawei Luo, Donghui Guo, Huichao Wang. Magnetotransport evolution and nonlinear Hall effect in altermagnetic MnTe. Front. Phys. DOI:10.15302/frontphys.2027.025204

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