Altermagnetism in the layered intercalated transition metal dichalcogenide CoNb<sub>4</sub>Se<sub>8</sub>

ORAL

Abstract

Altermagnets (AMs) are a new class of magnetic materials that combine the beneficial spintronics properties of ferromagnets and antiferromagnets, garnering significant attention recently. Here, we have identified altermagnetism in a layered intercalated transition metal diselenide, CoNb4Se8, which crystallizes with an ordered sublattice of intercalated Co atoms between NbSe2 layers. Single crystals are synthesized, and the structural characterizations are performed using single crystal diffraction and scanning tunneling microscopy. Magnetic measurements reveal easy-axis antiferromagnetism below 168 K. Density functional theory (DFT) calculations indicate that A-type antiferromagnetic ordering with easy-axis spin direction is the ground state, which is verified through single crystal neutron diffraction experiments. Electronic band structure calculations in this magnetic state display spin-split bands, confirming altermagnetism in this compound. The layered structure of CoNb4Se8 presents a promising platform for testing various predicted properties associated with altermagnetism.

*N.J.G., R.B.R., and I.I.M. were supported by Army Research Office under Cooperative Agreement Number W911NF- 22-2-0173. H.B. acknowledges support from the NSF CAREER award DMR-2343536. Work at Argonne National Laboratory (single crystal X-ray diffraction) was supported by the U.S. Department of Energy, Office of Science, Basic Energy Sciences, Materials Science and Engineering Division. N. S. acknowledges support from a Materials Science and Engineering Fellowship. H.C. acknowledges the support from U.S. Department of Energy, Office of Science, Office of Basic Energy Sciences, Early Career Research Program Award KC0402020, under Contract No. DE-AC05-00OR22725. This research used resources at the High Flux Isotope Reactor, the DOE Office of Science User Facility, operated by Oak Ridge National Laboratory. X. L. acknowledges support from a Ralph E. Powe Junior Faculty Enhancement Award from ORAU.

Presenters

  • Resham B Regmi

    • University of Notre Dame, Stavropoulos Center for Complex Quantum Matter
    • University of Notre Dame
    • Department of Physics and Astronomy, University of Notre Dame; Stavropoulos Centre for Complex Quantum Matter, University of Notre Dame

Authors

  • Resham B Regmi

    • University of Notre Dame, Stavropoulos Center for Complex Quantum Matter
    • University of Notre Dame
    • Department of Physics and Astronomy, University of Notre Dame; Stavropoulos Centre for Complex Quantum Matter, University of Notre Dame
  • Hari Bhandari

    • University of Notre Dame, Stavropoulos Center for Complex Quantum Matter, George Mason University
    • Department of Physics and Astronomy, Stavropoulos Center for Complex Quantum Matter, University of Notre Dame
    • University of Notre Dame
    • Department of Physics and Astronomy, University of Notre Dame; Stavropoulos Centre for Complex Quantum Matter, University of Notre Dame
  • Bishal Thapa

    • George Mason University, Quantum Science and Engineering Center
    • George Mason University
  • Yiqing Hao

    • Oak Ridge National Laboratory
  • Nileema Sharma

    • University of Notre Dame
    • University of Notre Dame, Stavropoulos Center for Complex Quantum Matter
  • James McKenzi

    • University of Notre Dame
    • University of Notre Dame, Stavropoulos Center for Complex Quantum Matter
  • Xinglong Chen

    • Argonne National Laboratory
  • Abhijeet Nayak

    • University of Notre Dame, Stavropoulos Center for Complex Quantum Matter
    • Department of Physics and Astronomy, Stavropoulos Center for Complex Quantum Matter, University of Notre Dame
  • Mohamed E Gazzah

    • University of Notre Dame, Stavropoulos Center for Complex Quantum Matter
    • University of Notre Dame
  • Bence Gabor Markus

    • University of Notre Dame, Stavropoulos Center for Complex Quantum Matter
    • University of Notre Dame
  • Laszlo Forro

    • University of Notre Dame, Stavropoulos Center for Complex Quantum Matter
    • University of Notre Dame
  • Xiaolong Liu

    • University of Notre Dame
    • University of Notre Dame, Stavropoulos Center for Complex Quantum Matter
    • Cornell University
  • John F Mitchell

    • Argonne National Laboratory
  • Igor I Mazin

    • George Mason University
    • George Mason University, Quantum Science and Engineering Center
    • Depertment of Physics and Astronomy, George Mason University; Quantum Science and Engineering Centre, George Mason University
  • Nirmal J Ghimire

    • University of Notre Dame, Stavropoulos Center for Complex Quantum Matter
    • Department of Physics and Astronomy, Stavropoulos Center for Complex Quantum Matter, University of Notre Dame
    • University of Notre Dame
    • Department of Physics and Astronomy, University of Notre Dame; Stavropoulos Centre for Complex Quantum Matter, University of Notre Dame