Exchange interactions in Kitaev materials: From NaIrO to -RuCl
arXiv:2206.04326 · doi:10.1103/PhysRevB.105.214411
Abstract
We present an analytical study of the exchange interactions between pseudospin one-half ions in honeycomb lattices with edge-shared octahedra. Various exchange channels involving Hubbard U, charge-transfer excitations, and cyclic exchange are considered. Hoppings within orbitals as well as between and orbitals are included. Special attention is paid to the trigonal crystal field effects on the exchange parameters. The obtained exchange Hamiltonian is dominated by ferromagnetic Kitaev interaction K within a wide range of . It is found that a parameter region close to the charge-transfer insulator regime and with a small is most promising to realize the Kitaev spin liquid phase. Two representative honeycomb materials NaIrO and -RuCl are discussed based on our theory. We have found that both materials share dominant ferromagnetic K and positive non-diagonal values. However, their Heisenberg J terms have opposite signs: AFM J>0 in NaIrO and FM J<0 in -RuCl. This brings different magnetic fluctuations and results in their different magnetization behaviors and spin excitation spectra. Proximity to FM state due to the large FM J is emphasized in -RuCl. The differences between the exchange couplings of these two materials originate from the opposite values, indicating that the crystal field can serve as an efficient control parameter to tune the magnetic properties of spin-orbit Mott insulators.
13 pages, 7 figures
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