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Symmetry Classification of Altermagnetism and Emergence of Type-IV Magnetism in Two Dimensions

  • Mu Tian
  • , Chaoxi Cui
  • , Zeying Zhang
  • , Jingyi Duan
  • , Wanxiang Feng
  • , Run Wu Zhang*
  • *Corresponding author for this work
  • Beijing Institute of Technology
  • Beijing University of Chemical Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Two-dimensional (2D) magnetism, particularly 2D altermagnetism (AM), has attracted considerable interest due to its exceptional physical properties and broad application potential. However, the classification of AM undergoes a fundamental paradigm shift when transitioning from three-dimensional (3D) to 2D symmetry-enforced fully compensated collinear magnetism—a shift that has remained largely overlooked. Here, by extending unconventional magnetism to 2D collinear systems, we identify the symmetry conditions and electronic band characteristics of a distinct magnetic phase: type-IV magnetism. This new class lies beyond the established descriptions of ferromagnetism, conventional antiferromagnetism, and AM. Type-IV magnetism supports the successive emergence of both nonrelativistic spin-degenerate and relativistic spin-splitting phenomena, belonging strictly to neither conventional antiferromagnetism nor standard AM. We further establish a universal symmetry classification framework for 2D type-IV magnets via a mapping from the collinear spin layer group to the magnetic layer group. Monolayer MgCr2O4 and monolayer BaMn2Ch3 (Ch=Se, Te) are showcased as representative materials, exhibiting gate-tunable reversible spin textures and the quantum electric Hall effect, respectively. Our Letter underscores the rich functional prospects of type-IV magnets, offering a new route toward spin manipulation and anomalous transport that promises innovative designs for high-performance spintronic devices.

Original languageEnglish
Article number206701
JournalPhysical Review Letters
Volume136
Issue number20
DOIs
Publication statusPublished - 22 May 2026

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