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[Publication] Our Research Uncovered the Anomalous Hall Effect Without Magnetization in a New Class of Antiferromagnet

  • mingxfu
  • Apr 18
  • 1 min read

Our latest study on magnetically intercalated transition metal dichalcogenide (TMD), V1/3NbS2, unveils an unusually enhanced anomalous Hall effect arising from a collinear antiferromagnetic state, together with non-Fermi-liquid behavior that defies the conventional quasiparticle picture. This work is led by former Project Researchers Mayukh Kumar Ray, Project Assistant Professor Mingxuan Fu, and former Project Researcher Taishi Chen, and is published in Nature Communications.


Our discovery can inspire a new conceptual framework for understanding quantum anomalous transport phenomena and expand the potential of antiferromagnets for spintronics applications. The primary collaborators on this research are Professor Ryotaro Arita from the Department of Physics at the

University of Tokyo and Professor Collin Broholm from Johns Hopkins University, USA.


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