Electronic structure of (LaNiO)/(LaAlO) heterostructures grown along [111]
arXiv:1204.0141 · doi:10.1103/PhysRevB.85.245131
Abstract
The electronic structure of a LaNiO bilayer grown along the [111] direction and confined between insulating layers of LaAlO is theoretically investigated using a combination of first principle calculations and effective multi-orbital lattice models. The LDA band structure is well reproduced by a tight-binding model for the Ni- orbitals defined on the buckled honeycomb lattice. We highlight peculiar properties of this model which include almost flat bands as well as linear and quadratic band crossing points. The effect of local correlations is discussed within the LDA scheme and within the Hartree-Fock approximation for interacting multi-orbital lattice models. Over a wide range of interaction parameters we find that a ferromagnetic phase is energetically favored. We discuss the possibility of additional orbital order which could stabilize a spontaneous Chern insulator with chiral edge modes or a staggered orbital phase with a reconstruction of the unit cell. By studying an interacting nickel-oxygen lattice model we find that the stability of these orbitally ordered phases also depends on the value of the charge-transfer energy. Controlling the charge-transfer energy might therefore be an important step towards engineering exotic electronic phases in certain classes of oxide heterostructures.
11 pages, 11 figures
References in corpus (7)
- Flat bands and Wigner crystallization in the honeycomb optical lattice
- Topological Insulators and Nematic Phases from Spontaneous Symmetry Breaking in 2D Fermi Systems with a Quadratic Band Crossing
- Orbital order and possible superconductivity in LaNiO3/LaMO3 superlattices
- Interaction-driven topological insulators on the kagome and the decorated honeycomb lattices
- Chemical control of orbital polarization in artificially structured transition-metal oxides: La2NiXO6 (X=B, Al, Ga, In) from first principles
- Doubly degenerate orbital system in honeycomb lattice: implication of orbital state in layered iron oxide
- Spectral functions and optical conductivity of spinless fermions on a checkerboard lattice
Cited by in corpus (25)
- Prediction of Near-Room-Temperature Quantum Anomalous Hall Effect on Honeycomb Materials
- Physics of ultrathin films and heterostructures of rare earth nickelates
- Emergent properties hidden in plane view: Strong electronic correlations at oxide interfaces
- Correlation effects in two-dimensional topological insulators
- Topological Crystalline Insulators and Dirac Octets in Anti-perovskites
- Confinement-driven transitions between topological and Mott phases in (LaNiO3)/(LaAlO3)(111) superlattices
- Polar catastrophe in ultra-thin limit: A case of rare-earth perovskite LaNiO3
- Topological phases in layered pyrochlore oxide thin films along the [111] direction
- Interaction-induced quantum anomalous Hall phase in (111) bilayer of LaCoO
- Complex magnetic order in nickelate slabs
- Entanglement Entropy and Spectra of the One-dimensional Kugel-Khomskii Model
- Quantum criticality at the Chern-to-normal insulator transition
- Geometrical lattice engineering of complex oxide heterostructures: a designer approach to emergent quantum states
- High-temperature large-gap quantum anomalous Hall insulator in ultrathin double perovskite films
- Topological Phases in Oxide Heterostructures with Light and Heavy Transition Metal Ions
- Interaction-induced quantum spin Hall insulator in the organic Dirac electron system -(BEDT-TSeF)I
- Epitaxial Growth of (1 1 1)-Oriented Spinel CoCrO/AlO Heterostructures
- Electronic structure of buried LaNiO3 layers in (111)-oriented LaNiO3/LaMnO3 superlattices probed by soft x-ray ARPES
- Persistent half-metallic ferromagnetism in a (111)-oriented manganite superlattice
- Orbital-Active Dirac Materials from the Symmetry Principle
- Magnetism and electronic structure of ()- and ()-oriented LaTiO bilayers sandwiched in LaScO barriers
- Emergent half-metal with mixed structural order in (111)-oriented (LaMnO)|(SrMnO) superlattices
- Emergence and tunability of Fermi-pocket and electronic instabilities in layered Nickelates
- First Principles Prediction of Topological Phases in Thin Films of Pyrochlore Iridates
- Large-Gap Quantum Anomalous Hall Effect in Monolayer Halide Perovskite