English

Electrical manipulation and detection of perpendicular altermagnetic order via proximitized Dirac semimetal

Materials Science 2026-07-08 v1

Abstract

Altermagnets, which combine antiferromagnetic-like magnetic compensation with ferromagnetic-like broken time-reversal symmetry, hold great promise for high-density and ultrafast spintronic applications. However, the detection and switching of perpendicular altermagnetic order are fundamentally constrained by magnetic symmetry, restricting both fundamental studies and practical implementation. We realize robust electrical reading and deterministic switching of perpendicular altermagnetic order by designing a Dirac semimetal/altermagnet heterostructure of PtTe2/CrSb. This engineered interface enables anomalous Hall readout via altermagnetic proximity effect and delivers efficient spin-orbit torque for manipulating the epitaxial perpendicular Neel vector in CrSb. These findings significantly broaden the functional scope of altermagnetic heterostructures and pave the way for highly scalable altermagnetic memory.

Keywords

Cite

@article{arxiv.2607.07299,
  title  = {Electrical manipulation and detection of perpendicular altermagnetic order via proximitized Dirac semimetal},
  author = {Zhaohui Li and Wenqing He and Hua Bai and Yang Wang and Alexander J. Grutter and Guoyi Shi and Xiwen Zhang and Christy Kinane and Andrew Caruana and Hui Ru Tan and Yuchen Pu and Chenhui Zhang and Yongxi Wang and Hanbum Park and Anjan Soumyanarayanan and Lei Shen and Hyunsoo Yang},
  journal= {arXiv preprint arXiv:2607.07299},
  year   = {2026}
}

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