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Strongly correlated itinerant magnetism near superconductivity in a magnetically doped transition metal dichalcogenide

ORAL

Abstract

Metallic ferromagnets with strongly interacting electrons often exhibit remarkable electronic phases such as ferromagnetic superconductivity, complex spin textures, and nontrivial topology. In this talk, I will discuss the synthesis of a layered magnetic metal NiTa4Se8 (or Ni1/4TaSe2) with a Curie temperature of 58 Kelvin. Magnetization data and density functional theory calculations indicate that the nickel atoms host uniaxial ferromagnetic order of about 0.7μB per atom, while an even smaller moment is generated in the itinerant tantalum conduction electrons. Strong correlations are evident in flat bands near the Fermi level, a high heat capacity coefficient, and a high Kadowaki-Woods ratio. Density functional theory calculations suggest that electron and hole Fermi surfaces in the ferromagnetic phase are associated with opposite spin polarization. When the system is diluted of magnetic ions, the samples become superconducting below about 2 Kelvin. I will briefly discuss possible mechanisms for superconductivity in this family.

Publication: arXiv.2208.09475

Presenters

  • Nikola Maksimovic

    Harvard University

Authors

  • Nikola Maksimovic

    Harvard University

  • Ryan Day

    UC Berkeley, University of California, Berkeley

  • Alexander Liebman-pelaez

    UC Berkeley

  • Fanghui Wan

    University of California, Berkeley

  • Nahyun Jo

    University of Michigan

  • Aaron Bostwick

    Lawrence Berkeley National Laboratory, LBNL, The Advanced Light Source, lawrence berkeley national lab, Lawrence Berkeley National Lab, Advanced Light Source, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, United States of America, Advanced Light Source, Lawrence Berkeley National Lab

  • Eli Rotenberg

    Lawrence Berkeley National Laboratory, Advanced Light Source, Lawrence Berkeley National Lab

  • Sinead M Griffin

    Lawrence Berkeley National Laboratory, Materials Science Division and Molecular Foundry, Berkeley Lab, Lawrence Berkeley National Lab, Materials Sciences Division and Molecular Foundry, LBNL

  • John Singleton

    NHMFL/ LANL

  • James G Analytis

    University of California, Berkeley

  • Christopher Jozwiak

    Lawrence Berkeley National Laboratory, LBNL, The Advanced Light Source, lawrence berkeley national lab, Lawrence Berkeley National Lab, Advanced Light Source, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, United States of America, Advanced Light Source, Lawrence Berkeley National Lab