Tuning the metal-insulator transition in d^1 and d^2 perovskites by epitaxial strain: a first principles-based study
arXiv:1608.03523 · doi:10.1103/PhysRevB.94.245109
Abstract
We investigate the effect of epitaxial strain on the Mott metal-insulator transition (MIT) in perovskite systems with d^1 and d^2 electron configuration of the transition metal (TM) cation. We first discuss the general trends expected from the changes in the crystal-field splitting and in the hopping parameters that are induced by epitaxial strain. We argue that the strain-induced crystal-field splitting generally favors the Mott-insulating state, whereas the strain-induced changes in the hopping parameters favor the metallic state under compressive strain and the insulating state under tensile strain. Thus, the two effects can effectively cancel each other under compressive strain, while they usually cooperate under tensile strain, in this case favoring the insulating state. We then validate these general considerations by performing electronic structure calculations for several d^1 and d^2 perovskites, using a combination of density functional theory (DFT) and dynamical mean-field theory (DMFT). We isolate the individual effects of strain-induced changes in either hopping or crystal-field by performing DMFT calculations where we fix one type of parameter to the corresponding unstrained DFT values. These calculations confirm our general considerations for SrVO_3 (d^1) and LaVO_3 (d^2), whereas the case of LaTiO_3 (d^1) is distinctly different, due to the strong effect of the octahedral tilt distortion in the underlying perovskite crystal structure. Our results demonstrate the possibility to tune the electronic properties of correlated TM oxides by using epitaxial strain, which allows to control the strength of electronic correlations and the vicinity to the Mott MIT.
12 pages, 9 figures
References in corpus (16)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Continuous-time Monte Carlo methods for quantum impurity models
- High Mobility in LaAlO3/SrTiO3 Heterostructures: Origin, Dimensionality and Perspectives
- Effect of epitaxial strain on the spontaneous polarization of thin film ferroelectrics
- Dynamical mean-field theory using Wannier functions: a flexible route to electronic structure calculations of strongly correlated materials
- Orbital fluctuations in the different phases of LaVO3 and YVO3
- Metal-Insulator phase diagram and orbital selectivity in 3-orbital models with rotationally invariant Hund coupling
- Electronic Transitions in Strained SmNiO_3 Thin Films
- Compressive strain-induced metal-insulator transition in orthorhombic SrIrO3 thin films
- Dynamical Screening Effects in Correlated Electron Materials -- A Progress Report on Combined Many-Body Perturbation and Dynamical Mean Field Theory: "GW+DMFT"
- General DFT++ method implemented with projector augmented waves: Electronic structure of SrVO and the Mott Transition in CaSrRuO
- Effect of Crystal-Field Splitting and Inter-Band Hybridization on the Metal-Insulator Transitions of Strongly Correlated Systems
- Density functional plus dynamical mean field theory of the metal-insulator transition in early transition metal oxides
- Spectral properties of the three-dimensional Hubbard model
- Latent Instabilities in Metallic LaNiO3 Films by Strain Control of Fermi-Surface Topology
- Strain tuning of electronic structure in Bi4Ti3O12-LaCoO3 epitaxial thin films
Cited by in corpus (9)
- Cavity engineering of solid-state materials without external driving
- Wavefunctions, electronic localization and bonding properties for correlated materials beyond the Kohn-Sham formalism
- Quantum Confinement Induced Metal-Insulator Transition in Strongly Correlated Quantum Wells of SrVO Superlattice
- On the origin of supertetragonality in BaTiO
- Bandwidth Control and Symmetry Breaking in a Mott-Hubbard Correlated Metal
- Strain induced variations in transport and optical properties of SrVO: a DFT+U study
- Imprinted atomic displacements drive spin-orbital order in a vanadate perovskite
- Multilayer engineering of CaVO thin films with SrTiO and LaAlO from DFT+DMFT
- The impact of the near-surface region on the interpretation of x-ray absorption spectroscopy