Electronic reconstruction in correlated electron heterostructures
arXiv:cond-mat/0507150 · doi:10.1117/12.623199
Abstract
Electronic phase behavior in correlated-electron systems is a fundamental problem of condensed matter physics. We argue here that the change in the phase behavior near the surface and interface, i.e., {\em electronic reconstruction}, is the fundamental issue of the correlated-electron surface or interface science. Beyond its importance to basic science, understanding of this behavior is crucial for potential devices exploiting the novel properties of the correlated systems. % We present a general overview of the field, and then illustrate the general concepts by theoretical studies of the model heterostructures comprised of a Mott-insulator and a band-insulator, which show that spin (and orbital) orderings in thin heterostructures are generically different from the bulk and that the interface region, about three-unit-cell wide, is always metallic, demonstrating that {\em electronic reconstruction} generally occurs. % Predictions for photoemission experiments are made to show how the electronic properties change as a function of position, and the magnetic phase diagram is determined as a function of temperature, number of layers, and interaction strength. Future directions for research are also discussed.
Proceedings of SPIE conference on Strongly Correlated Electron Materials: Physics and Nanoengineering, San Diego, CA, 31 July - 4 August, 2005
References in corpus (12)
- Influence of strain and oxygen vacancies on the magnetoelectric properties of multiferroic bismuth ferrite
- Crystal and magnetic structure of LaTiO3 : evidence for non-degenerate -orbitals
- Spatial inhomogeneity and strong correlation physics: a dynamical mean field study of a model Mott-insulator/band-insulator heterostructure
- Anomalous enhancement of tetragonality in PbTiO3 induced by negative pressure
- Epitaxially strained [001]-(PbTiO)(PbZrO) superlattice and PbTiO from first principles
- Orbital-Spin Structure and Coupling to Lattice in RTiO with R=La,Pr,Nd and Sm
- Theory of Mott insulator/band insulator heterostructure
- Dynamical mean field theory for strongly correlated inhomogeneous multilayered nanostructures
- Correlation and surface effects in Vanadium Oxides
- Electron-lattice coupling, orbital stability and the phase diagram of CaSrRuO
- Benchmarking a semiclassical impurity solver for dynamical-mean-field theory: self-energies and magnetic transitions of the single-orbital Hubbard model
- Electronic Transport through YBCO Grain Boundary Interfaces between 4.2 K and 300 K