English

Large off diagonal exchange couplings and spin liquid states in $\mathbf{C_3}$ symmetric iridates

Strongly Correlated Electrons 2019-10-23 v1

Abstract

Iridate oxides on a honeycomb lattice are considered promising candidates for realization of quantum spin liquid states. We investigate the magnetic couplings in a structural model for a honeycomb iridate K2_2IrO3_3, with C3C_3 point group symmetry at the Ir sites, which is an end member of the recently synthesized iridate family Kx_xIry_yO2_2. Using \textit{ab-initio} quantum chemical methods, we elucidate the subtle relationship between the real space symmetry and magnetic anisotropy and show that the higher point group symmetry leads to high frustration with strong magnetic anisotropy driven by the unusually large off-diagonal exchange couplings (Γ\Gamma's) as opposed to other spin-liquid candidates considered so far. Consequently, large quantum fluctuations imply lack of magnetic ordering consistent with the experiments. Exact diagonalization calculations for the fully anisotropic KK-JJ-Γ\Gamma Hamiltonian reveal the importance of the off-diagonal anisotropic exchange couplings in stabilizing a spin liquid state and highlight an alternative route to stabilize spin liquid states for ferromagnetic KK.

Keywords

Cite

@article{arxiv.1909.02277,
  title  = {Large off diagonal exchange couplings and spin liquid states in $\mathbf{C_3}$ symmetric iridates},
  author = {Ravi Yadav and Satoshi Nishimoto and Manuel Richter and Jeroen van den Brink and Rajyavardhan Ray},
  journal= {arXiv preprint arXiv:1909.02277},
  year   = {2019}
}

Comments

8 pages, 3 figures, and Supplemental Material