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Magnetism of Kitaev spin-liquid candidate material RuBr$_3$

Strongly Correlated Electrons 2022-01-28 v1 Materials Science

Abstract

The ruthenium halide α\alpha-RuCl3_{3} is a promising candidate for a Kitaev spin liquid. However, the microscopic model describing α\alpha-RuCl3_{3} is still debated partly because of a lack of analogue materials for α\alpha-RuCl3_{3}, which prevents tracking of electronic properties as functions of controlled interaction parameters. Here, we report a successful synthesis of RuBr3_{3}. The material RuBr3_{3}~possesses BiI3_3-type structure (space group: R3R\overline{3}) where Ru3+^{3+} form an ideal honeycomb lattice. Although RuBr3_{3} has a negative Weiss temperature, it undergoes a zigzag antiferromagnetic transition at TN=34T_\mathrm{N}=34 K, as does α\alpha-RuCl3_{3}. Our analyses indicate that the Kitaev and non-Kitaev interactions can be modified in ruthenium trihalides by changing the ligand sites, which provides a new platform for exploring Kitaev spin liquids.

Keywords

Cite

@article{arxiv.2109.00129,
  title  = {Magnetism of Kitaev spin-liquid candidate material RuBr$_3$},
  author = {Yoshinori Imai and Kazuhiro Nawa and Yasuhiro Shimizu and Wakana Yamada and Hideyuki Fujihara and Takuya Aoyama and Ryotaro Takahashi and Daisuke Okuyama and Takamasa Ohashi and Masato Hagihala and Shuki Torii and Daisuke Morikawa and Masami Terauchi and Takayuki Kawamata and Masatsune Kato and Hirotada Gotou and Masayuki Itoh and Taku J. Sato and Kenya Ohgushi},
  journal= {arXiv preprint arXiv:2109.00129},
  year   = {2022}
}