Design of novel artificial materials based on ferroelectric perovskites relies on the basic principles of electrostatic coupling and in-plane lattice matching. These rules state that the out-of-plane component of the electric displacement field and the in-plane components of the strain are preserved across a layered superlattice, provided that certain growth conditions are respected. Intense research is currently directed at optimizing materials functionalities based on these guidelines, often with remarkable success. Such principles, however, are of limited practical use unless one disposes of reliable data on how a given material behaves under arbitrary electrical and mechanical boundary conditions. Here we demonstrate, by focusing on the...
Using first-principles methods, we investigate the joint effects of epitaxial strain and electrostat...
While nature provides a plethora of perovskite materials, only a few exhibits large ferroelectricity...
The behavior of PbTiO3 under uniaxial strains and stresses is investigated from first-principles cal...
This thesis discusses first-principles modeling of functional perovskite oxides and perovskite super...
While nature provides a plethora of perovskite materials, only a few exhibit large ferroelectricity ...
This thesis consists of the development and application of computational methods, models, and tools ...
We study the interplay of structural and polar distortions in hexagonalYMnO3 and short-period PbTiO3...
Ab initio DFT calculations based on the local density approximation were performed to study (a) in-p...
In this thesis, we present computational studies of a special class of complex oxides. Specifically,...
Ferroelectrics are an important class of materials that exhibit rich functional behavior and are bei...
Ferroelectric materials are characterized by a reversible spontaneous electric polarization in the a...
The combination of strain and electrostatic engineering in epitaxial heterostructures of ferroelectr...
The combination of strain and electrostatic engineering in epitaxial heterostructures of ferroelectr...
We report first-principles calculations on the coupling between epitaxial strain, polarization, and ...
We report first-principles calculations on the coupling between epitaxial strain, polarization, and ...
Using first-principles methods, we investigate the joint effects of epitaxial strain and electrostat...
While nature provides a plethora of perovskite materials, only a few exhibits large ferroelectricity...
The behavior of PbTiO3 under uniaxial strains and stresses is investigated from first-principles cal...
This thesis discusses first-principles modeling of functional perovskite oxides and perovskite super...
While nature provides a plethora of perovskite materials, only a few exhibit large ferroelectricity ...
This thesis consists of the development and application of computational methods, models, and tools ...
We study the interplay of structural and polar distortions in hexagonalYMnO3 and short-period PbTiO3...
Ab initio DFT calculations based on the local density approximation were performed to study (a) in-p...
In this thesis, we present computational studies of a special class of complex oxides. Specifically,...
Ferroelectrics are an important class of materials that exhibit rich functional behavior and are bei...
Ferroelectric materials are characterized by a reversible spontaneous electric polarization in the a...
The combination of strain and electrostatic engineering in epitaxial heterostructures of ferroelectr...
The combination of strain and electrostatic engineering in epitaxial heterostructures of ferroelectr...
We report first-principles calculations on the coupling between epitaxial strain, polarization, and ...
We report first-principles calculations on the coupling between epitaxial strain, polarization, and ...
Using first-principles methods, we investigate the joint effects of epitaxial strain and electrostat...
While nature provides a plethora of perovskite materials, only a few exhibits large ferroelectricity...
The behavior of PbTiO3 under uniaxial strains and stresses is investigated from first-principles cal...