Mean-field Study of Charge, Spin, and Orbital Orderings in Triangular-lattice Compounds ANiO2 (A=Na, Li, Ag)
arXiv:1101.3828 · doi:10.1143/JPSJ.80.044705
Abstract
We present our theoretical results on the ground states in layered triangular-lattice compounds ANiO2 (A=Na, Li, Ag). To describe the interplay between charge, spin, orbital, and lattice degrees of freedom in these materials, we study a doubly-degenerate Hubbard model with electron-phonon couplings by the Hartree-Fock approximation combined with the adiabatic approximation. In a weakly-correlated region, we find a metallic state accompanied by \sqroot3x\sqroot3 charge ordering. On the other hand, we obtain an insulating phase with spin-ferro and orbital-ferro ordering in a wide range from intermediate to strong correlation. These phases share many characteristics with the low-temperature states of AgNiO2 and NaNiO2, respectively. The charge-ordered metallic phase is stabilized by a compromise between Coulomb repulsions and effective attractive interactions originating from the breathing-type electronphonon coupling as well as the Hund's-rule coupling. The spin-orbital-ordered insulating phase is stabilized by the cooperative effect of electron correlations and the Jahn-Teller coupling, while the Hund's-rule coupling also plays a role in the competition with other orbital-ordered phases. The results suggest a unified way of understanding a variety of low-temperature phases in ANiO2. We also discuss a keen competition among different spin-orbital-ordered phases in relation to a puzzling behavior observed in LiNiO2.
References in corpus (10)
- Theoretical Aspects of Charge Ordering in Molecular Conductors
- Orbital degeneracy as a source of frustration in LiNiO
- Strong coupling theory of the spinless charges on the triangular lattices: possibility of a new quantum liquid
- Orbital degeneracy removed by charge order in triangular antiferromagnet AgNiO2
- Orbital and spin physics in LiNiO2 and NaNiO2
- Charge disproportionation and collinear magnetic order in the frustrated triangular antiferromagnet AgNiO2
- Ordering and Spin Waves in NaNiO2 : A Stacked Quantum Ferromagnet
- Spin dynamics of frustrated easy-axis triangular antiferromagnet 2H-AgNiO2 explored by inelastic neutron scattering
- Supersolid phases in a realistic three-dimensional spin model
- Ferrodistorsive orbital ordering in the layered nickelate NaNiO_2: A density-functional study
Cited by in corpus (4)
- Charge States of Ions, and Mechanisms of Charge-Ordering Transitions
- Pinball liquid phase from Hund's coupling in frustrated transition metal oxides
- Multiorbital kinetic effects on charge ordering of frustrated electrons on the triangular lattice
- Temperature-Dependent Dynamic Disproportionation in LiNiO