Metal-insulator transition through a semi-Dirac point in oxide nanostructures: VO (001) layers confined within TiO
arXiv:0910.4411 · doi:10.1103/PhysRevB.81.035111
Abstract
Multilayer (TiO)/(VO) nanostructures ( - interfaces with no polar discontinuity) show a metal-insulator transition with respect to the VO layer thickness in first principles calculations. For 5 layers, the system becomes metallic, while being insulating for = 1 and 2. The metal-insulator transition occurs through a semi-Dirac point phase for = 3 and 4, in which the Fermi surface is point-like and the electrons behave as massless along the zone diagonal in k-space and as massive fermions along the perpendicular direction. We provide an analysis of the evolution of the electronic structure through this unprecedented insulator-to-metal transition, and identify it as resulting from quantum confinement producing a non-intuitive orbital ordering on the V ions, rather than being a specific oxide interface effect. Spin-orbit coupling does not destroy the semi-Dirac point for the calculated ground state, where the spins are aligned along the rutile c-axis, but it does open a substantial gap if the spins lie in the basal plane.
9 pages, 8 figures
References in corpus (9)
- Origin of charge density at LaAlO3-on-SrTiO3 hetero-interfaces; possibility of intrinsic doping
- Orbital-assisted metal-insulator transition in VO
- Metal-insulator transition in vanadium dioxide nanobeams: probing sub-domain properties of strongly correlated materials
- Half-metallic semiDirac point generated by quantum confinement in TiO/VO nanostructures
- Tight-binding modeling and low-energy behavior of the semi-Dirac point
- Anisotropy and Magnetism in the LSDA+U Method
- Magnetically Hidden Order of Kramers Doublets in Systems: SrVO
- Orbital-quenching-induced magnetism in Ba_2NaOsO_6
- Homopolar bond formation in ZnVO close to a metal-insulator transition
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