English

Metastable Kitaev Magnets

Materials Science 2022-01-19 v1 Strongly Correlated Electrons

Abstract

Nearly two decades ago, Alexei Kitaev proposed a model for spin-1/21/2 particles with bond-directional interactions on a two-dimensional honeycomb lattice which had the potential to host a quantum spin-liquid ground state. This work initiated numerous investigations to design and synthesize materials that would physically realize the Kitaev Hamiltonian. The first-generation of such materials, such as Na2_{2}IrO3_{3}, α\alpha-Li2_{2}IrO3_{3}, and α\alpha-RuCl3_{3}, revealed the presence of non-Kitaev interactions such as the Heisenberg and off-diagonal exchange. Both physical pressure and chemical doping were used to tune the relative strength of the Kitaev and competing interactions; however, little progress was made towards achieving a purely Kitaev system. Here, we review the recent breakthrough in modifying Kitaev magnets via topochemical methods that has led to the second-generation of Kitaev materials. We show how structural modifications due to the topotactic exchange reactions can alter the magnetic interactions in favor of a quantum spin-liquid phase.

Keywords

Cite

@article{arxiv.2201.06085,
  title  = {Metastable Kitaev Magnets},
  author = {Faranak Bahrami and Mykola Abramchuk and Oleg I. Lebedev and Fazel Tafti},
  journal= {arXiv preprint arXiv:2201.06085},
  year   = {2022}
}

Comments

18 pages, 7 figures

R2 v1 2026-06-24T08:51:38.802Z