Minimal models of -LiIrO: On the range of the interactions, ground state properties, and magnetization processes
arXiv:1903.01801 · doi:10.1103/PhysRevB.99.184436
Abstract
In recent years, a lot of effort has been devoted to the quest for experimental realizations of Kitaev interactions in spin systems. Recently, many materials have been synthesized which seem to realize extended Kitaev models, where Kitaev interactions are supplemented by Heisenberg and other bond dependent terms. The crystal and electronic structure of these materials renders the determination of a minimal model a non trivial pursuit. In this work, we will concentrate on one of these particular materials, -LiIrO, for which various minimal models have been proposed. Employing large scale Monte Carlo simulations we show how the number of prospective models can be reduced. We study in detail six models with different range of the interactions, and show how only two of those reproduce the most recent experimental results for this material. We obtain two possible minimal models, one of them with nearest neighbour interactions, while the other includes interactions up to third neighbours. Furthermore, we show that strong bond anisotropies and further neighbour interactions are crucial to stabilize the tilted counterotating spirals found in -LiIrO. We further clarify the picture, and distinguish these two models by studying the magnetization processes. We predict the magnetization behaviour of these models, and propose future experimental directions.
Main text: 14 pages, 16 figures
References in corpus (10)
- Mott Insulators in the Strong Spin-Orbit Coupling Limit: From Heisenberg to a Quantum Compass and Kitaev Models
- -RuCl3: a Spin-Orbit Assisted Mott Insulator on a Honeycomb Lattice
- Models and Materials for Generalized Kitaev Magnetism
- Hyper-honeycomb iridate -Li2IrO3 as a platform for Kitaev magnetism
- Non-coplanar and counter-rotating incommensurate magnetic order stabilized by Kitaev interactions in -Li2IrO3
- Spin liquid behaviour in Jeff=1/2 triangular lattice Ba3IrTi2O9
- Spiral order in the honeycomb iridate Li2IrO3
- Theory of Magnetic Phase Diagrams in Hyperhoneycomb and Harmonic-honeycomb Iridates
- Unified theory of spiral magnetism in the harmonic-honeycomb iridates α, β, γ Li2IrO3
- Effect of nonmagnetic dilution in honeycomb lattice iridates NaIrO and LiIrO