Density functional theory (DFT) is the most widely-used first-principles theory for analyzing, describing and predicting the properties of solids based on the fundamental laws of quantum mechanics. The success of the theory is a consequence of powerful approximations to the unknown exchange and correlation energy of the interacting electrons and of sophisticated electronic structure methods that enable the computation of the density functional equations on a computer. A widely used electronic structure method is the full-potential linearized augmented plane-wave (FLAPW) method, that is considered to be one of the most precise methods of its kindand often referred to as a standard. Challenged by the demand of treating chemically and structura...
The GW method has become the state-of-the-art approach for the first-principles description of the e...
In the past several decades, density functional theory (DFT) has evolved as a leading player across ...
In this thesis, a new ab-initio method for molecular dynamics within the framework of density functi...
Among the electronic structure methods for determining the electronic, structural, dynamic, magnetic...
Solids consisting of periodic lattice structures exhibit vibrational modes of their atomic nuclei. I...
We formulate the Kohn-Sham density functional theory in terms of nonorthogonal, localized orbitals. ...
Quantum mechanical simulation of realistic models of nanostructured systems, such as nanocrystals an...
In this thesis, we extended the applicability of the full-potential linearized augmented-plane-wave ...
We demonstrate the use of the plane wave basis for all-electron electronic structure calculations. T...
The calculation of the electronic structure of large systems by methods based on density functional ...
The optimized-effective-potential method is a special technique to construct local Kohn-Sham potenti...
Simulations of materials from first principles have improved drastically over the last few decades, ...
Simulations of materials from first-principles have improved drastically over the last decades, bene...
Over the course of the past few decades, quantum mechanical calculations based on Kohn-Sham density ...
A full-potential linear-combination-of-atomic-orbitals method based on the density-functional theory...
The GW method has become the state-of-the-art approach for the first-principles description of the e...
In the past several decades, density functional theory (DFT) has evolved as a leading player across ...
In this thesis, a new ab-initio method for molecular dynamics within the framework of density functi...
Among the electronic structure methods for determining the electronic, structural, dynamic, magnetic...
Solids consisting of periodic lattice structures exhibit vibrational modes of their atomic nuclei. I...
We formulate the Kohn-Sham density functional theory in terms of nonorthogonal, localized orbitals. ...
Quantum mechanical simulation of realistic models of nanostructured systems, such as nanocrystals an...
In this thesis, we extended the applicability of the full-potential linearized augmented-plane-wave ...
We demonstrate the use of the plane wave basis for all-electron electronic structure calculations. T...
The calculation of the electronic structure of large systems by methods based on density functional ...
The optimized-effective-potential method is a special technique to construct local Kohn-Sham potenti...
Simulations of materials from first principles have improved drastically over the last few decades, ...
Simulations of materials from first-principles have improved drastically over the last decades, bene...
Over the course of the past few decades, quantum mechanical calculations based on Kohn-Sham density ...
A full-potential linear-combination-of-atomic-orbitals method based on the density-functional theory...
The GW method has become the state-of-the-art approach for the first-principles description of the e...
In the past several decades, density functional theory (DFT) has evolved as a leading player across ...
In this thesis, a new ab-initio method for molecular dynamics within the framework of density functi...