npj Quantum Materials (Oct 2021)

Ferromagnetism out of charge fluctuation of strongly correlated electrons in κ-(BEDT-TTF)2Hg(SCN)2Br

  • Minoru Yamashita,
  • Shiori Sugiura,
  • Akira Ueda,
  • Shun Dekura,
  • Taichi Terashima,
  • Shinya Uji,
  • Yoshiya Sunairi,
  • Hatsumi Mori,
  • Elena I. Zhilyaeva,
  • Svetlana A. Torunova,
  • Rimma N. Lyubovskaya,
  • Natalia Drichko,
  • Chisa Hotta

DOI
https://doi.org/10.1038/s41535-021-00387-6
Journal volume & issue
Vol. 6, no. 1
pp. 1 – 8

Abstract

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Abstract We perform magnetic susceptibility and magnetic torque measurements on the organic κ-(BEDT-TTF)2Hg(SCN)2Br, which is recently suggested to host an exotic quantum dipole-liquid in its low-temperature insulating phase. Below the metal-insulator (MI) transition temperature, the magnetic susceptibility follows a Curie–Weiss law with a positive Curie–Weiss temperature, and a particular $$M\propto \sqrt{H}$$ M ∝ H curve is observed. The emergent ferromagnetically interacting spins amount to about 1/6 of the full spin moment of localized charges. Taking account of the possible inhomogeneous quasi-charge-order that forms a dipole-liquid, we construct a model of antiferromagnetically interacting spin chains in two adjacent charge-ordered domains, which are coupled via fluctuating charges on a Mott-dimer at the boundary. We find that the charge fluctuations can draw a weak ferromagnetic moment out of the spin singlet domains.