This study presents a systematic assessment of the behavior of self-trapped electrons in PbTiO3, which is a prototypical ferroelectric material with a wide range of technological applications. Since modeling of polarons depends sensitively on the applied method, the goal of this work is to identify the parameters used in density functional theory (DFT), which allow to predict the properties of polarons with high accuracy. The DFT+U method is employed to benchmark how the choice of k-mesh grids, lattice parameters, and pseudopotential (PP) affects the polaron trapping energy. Then, the appropriate parameters were used to study polaron trapping energy and its optical transition using the HSE06 hybrid functional. It is shown that the magnitude...
Electronic states in a crystal can localize due to strong electron-phonon (e-ph) interactions, formi...
Ferroelectrics are an important class of materials that exhibit rich functional behavior and are bei...
Abstract Since the preliminary work of Anisimov and co-workers, the Hubbard corrected DFT+U function...
This study presents a systematic assessment of the behavior of self-trapped electrons in PbTiO3, whi...
We investigate the formation of self-trapped holes (STH) in three prototypical perovskites (SrTiO3, ...
We investigate the formation of self-trapped holes (STH) in three prototypical perovskites (SrTiO3, ...
In the simplest picture, a “self-trapped” polaron forms when an excess electron or hole deforms a cr...
The aim of this thesis is to introduce the polaron concept and to perform a DFT numerical calculatio...
In an extension of our previous study on the electron polarons and excitons in KNbO3, KTaO3 and BaT...
peer reviewedPolarons are physical objects of material science that are hard to capture from first-p...
none5siThe question whether excess electrons in SrTiO3 form free or trapped carriers is a crucial as...
In recent years, metal halide perovskites have generated tremendous interest for optoelectronic appl...
At ferroelectric longitudinal domain walls there is an uncompensated charge, which could form a two-...
In metal oxide semiconductors, charge transport is often governed by polaron transport. The polaron ...
The Fröhlich coupling describes the interaction between electrons and infrared-active vibrations at ...
Electronic states in a crystal can localize due to strong electron-phonon (e-ph) interactions, formi...
Ferroelectrics are an important class of materials that exhibit rich functional behavior and are bei...
Abstract Since the preliminary work of Anisimov and co-workers, the Hubbard corrected DFT+U function...
This study presents a systematic assessment of the behavior of self-trapped electrons in PbTiO3, whi...
We investigate the formation of self-trapped holes (STH) in three prototypical perovskites (SrTiO3, ...
We investigate the formation of self-trapped holes (STH) in three prototypical perovskites (SrTiO3, ...
In the simplest picture, a “self-trapped” polaron forms when an excess electron or hole deforms a cr...
The aim of this thesis is to introduce the polaron concept and to perform a DFT numerical calculatio...
In an extension of our previous study on the electron polarons and excitons in KNbO3, KTaO3 and BaT...
peer reviewedPolarons are physical objects of material science that are hard to capture from first-p...
none5siThe question whether excess electrons in SrTiO3 form free or trapped carriers is a crucial as...
In recent years, metal halide perovskites have generated tremendous interest for optoelectronic appl...
At ferroelectric longitudinal domain walls there is an uncompensated charge, which could form a two-...
In metal oxide semiconductors, charge transport is often governed by polaron transport. The polaron ...
The Fröhlich coupling describes the interaction between electrons and infrared-active vibrations at ...
Electronic states in a crystal can localize due to strong electron-phonon (e-ph) interactions, formi...
Ferroelectrics are an important class of materials that exhibit rich functional behavior and are bei...
Abstract Since the preliminary work of Anisimov and co-workers, the Hubbard corrected DFT+U function...