We introduce an extension of the density functional perturbation theory (DFPT) that allows self-consistent linear-response calculations from a DFT + U ground state. Using this scheme, the full phonon dispersion of strongly correlated materials, whose ground state can be captured with Hubbard-corrected functionals, can be accessed with unprecedented accuracy and numerical efficiency. The tool is applied to the study of MnO and NiO in their antiferromagnetic (AFII) ground state. Our results confirm the highly noncubic behavior of these systems and show a strong interplay between features of the phonon spectrum and the occupation of specific d states, suggesting the possibility to investigate the electronic structure of these materials through...
Kohn-Sham density functional theory (KSDFT) is by far the most widely used electronic structure theo...
This thesis encompasses theoretical and computational studies of strongly correlated elec-tron syste...
Soon after the discovery of the basic principles of quantum mechanics theorists set out to explain t...
We introduce an extension of the density functional perturbation theory (DFPT) that allows self-cons...
We introduce an extension of the density functional perturbation theory (DFPT) that allows self-cons...
We present in full detail a newly developed formalism enabling density functional perturbation theor...
Lattice dynamical properties of antiferromagnetic rocksalt oxides are often interpreted using the cu...
The magnetic properties of the transition metal monoxides MnO and NiO are investigated at equilibriu...
We present the ab initio phonon dispersions of magnetic bcc Fe and fee Ni. Our calculations are carr...
The LDA+DMFT approach, by combining band structure calculations (LDA) and the many-body techniques o...
We have used a self-consistent pseudopotential method within local-density-functional theory to calc...
This thesis is dedicated to the development, implementation and application of a combination of Dens...
The knowledge of the vibrational properties of a material is of key importance to understand physica...
Solids consisting of periodic lattice structures exhibit vibrational modes of their atomic nuclei. I...
The knowledge of the vibrational properties of a material is of key importance to understand physica...
Kohn-Sham density functional theory (KSDFT) is by far the most widely used electronic structure theo...
This thesis encompasses theoretical and computational studies of strongly correlated elec-tron syste...
Soon after the discovery of the basic principles of quantum mechanics theorists set out to explain t...
We introduce an extension of the density functional perturbation theory (DFPT) that allows self-cons...
We introduce an extension of the density functional perturbation theory (DFPT) that allows self-cons...
We present in full detail a newly developed formalism enabling density functional perturbation theor...
Lattice dynamical properties of antiferromagnetic rocksalt oxides are often interpreted using the cu...
The magnetic properties of the transition metal monoxides MnO and NiO are investigated at equilibriu...
We present the ab initio phonon dispersions of magnetic bcc Fe and fee Ni. Our calculations are carr...
The LDA+DMFT approach, by combining band structure calculations (LDA) and the many-body techniques o...
We have used a self-consistent pseudopotential method within local-density-functional theory to calc...
This thesis is dedicated to the development, implementation and application of a combination of Dens...
The knowledge of the vibrational properties of a material is of key importance to understand physica...
Solids consisting of periodic lattice structures exhibit vibrational modes of their atomic nuclei. I...
The knowledge of the vibrational properties of a material is of key importance to understand physica...
Kohn-Sham density functional theory (KSDFT) is by far the most widely used electronic structure theo...
This thesis encompasses theoretical and computational studies of strongly correlated elec-tron syste...
Soon after the discovery of the basic principles of quantum mechanics theorists set out to explain t...