peer reviewedPolarons are physical objects of material science that are hard to capture from first-principles calculations. WO3 is a paradigmatic system to study polarons and here we present calculations of a single self-trapped single polaron in WO3 from density functional theory calculations. Our calculations show that the single polaron is at a higher energy than the fully delocalized solution, in agreement with the experiments where a single polaron is an excited state of WO3. The symmetry-adapted mode decomposition of the polaron distortions shows that, among numerous modes, a polar zone center mode has the largest contribution and can be at the origin of the observed weak ferroelectricity of WO3
The electronic structure of the insulating sodium tungsten bronze, Na0.025WO3,is investigated by hig...
none5siThe question whether excess electrons in SrTiO3 form free or trapped carriers is a crucial as...
We develop a formalism and a computational method to study polarons in insulators and semiconductors...
Electron localization and polaron mobility in oxygen-deficient as well as Li-doped monoclinic tungst...
Using first-principles calculations, we analyze the structural properties of tungsten trioxide WO3. ...
This Ph.D. thesis centers on the theoretical investigation of ferroelectrics and related properties...
This study presents a systematic assessment of the behavior of self-trapped electrons in PbTiO3, whi...
Using first-principles calculations, we analyze the structural properties of tungsten trioxide WO$_{...
Theoretical studies of lattice- and spin-polarons are presented in this thesis, where the primary to...
We present a theoretical study of the structure and functionality of ferroelastic domain walls in tu...
WO3 is a 5d compound that undergoes several structural transitions in its bulk form. Its versatility...
Photoinduced IR absorption measurements are reported on WO3. A photoinduced midinfrared small polaro...
The electronic structure of the insulating sodium tungsten bronze, Na0.025WO3, is investigated by hi...
In the simplest picture, a “self-trapped” polaron forms when an excess electron or hole deforms a cr...
The electronic structure of the insulating sodium tungsten bronze, Na0.025WO3, is investigated by hi...
The electronic structure of the insulating sodium tungsten bronze, Na0.025WO3,is investigated by hig...
none5siThe question whether excess electrons in SrTiO3 form free or trapped carriers is a crucial as...
We develop a formalism and a computational method to study polarons in insulators and semiconductors...
Electron localization and polaron mobility in oxygen-deficient as well as Li-doped monoclinic tungst...
Using first-principles calculations, we analyze the structural properties of tungsten trioxide WO3. ...
This Ph.D. thesis centers on the theoretical investigation of ferroelectrics and related properties...
This study presents a systematic assessment of the behavior of self-trapped electrons in PbTiO3, whi...
Using first-principles calculations, we analyze the structural properties of tungsten trioxide WO$_{...
Theoretical studies of lattice- and spin-polarons are presented in this thesis, where the primary to...
We present a theoretical study of the structure and functionality of ferroelastic domain walls in tu...
WO3 is a 5d compound that undergoes several structural transitions in its bulk form. Its versatility...
Photoinduced IR absorption measurements are reported on WO3. A photoinduced midinfrared small polaro...
The electronic structure of the insulating sodium tungsten bronze, Na0.025WO3, is investigated by hi...
In the simplest picture, a “self-trapped” polaron forms when an excess electron or hole deforms a cr...
The electronic structure of the insulating sodium tungsten bronze, Na0.025WO3, is investigated by hi...
The electronic structure of the insulating sodium tungsten bronze, Na0.025WO3,is investigated by hig...
none5siThe question whether excess electrons in SrTiO3 form free or trapped carriers is a crucial as...
We develop a formalism and a computational method to study polarons in insulators and semiconductors...