English

Designing Kitaev spin liquids in metal-organic frameworks

Strongly Correlated Electrons 2017-08-07 v4 Materials Science Quantum Physics

Abstract

Kitaev's honeycomb lattice spin model is a remarkable exactly solvable model, which has a particular type of spin liquid (Kitaev spin liquid) as the ground state. Although its possible realization in iridates and α\alpha-RuCl3_3 has been vigorously discussed recently, these materials have substantial non-Kitaev direct exchange interactions and do not have a spin liquid ground state. We propose metal-organic frameworks (MOFs) with Ru3+^{3+} (or Os3+^{3+}) forming the honeycomb lattice as promising candidates for a more ideal realization of Kitaev-type spin models where the direct exchange interaction is strongly suppressed. The great flexibility of MOFs allows generalization to other three-dimensional lattices, for potential realization of a variety of spin liquids such as a Weyl spin liquid.

Keywords

Cite

@article{arxiv.1605.04471,
  title  = {Designing Kitaev spin liquids in metal-organic frameworks},
  author = {Masahiko G. Yamada and Hiroyuki Fujita and Masaki Oshikawa},
  journal= {arXiv preprint arXiv:1605.04471},
  year   = {2017}
}

Comments

6+11 pages, 2+7 figures, 0+1 table; the final submitted version to appear in PRL