Grimme’s DFT-D dispersion contribution to interatomic forces constants, required for the computation of the phonon band structures in density-functional perturbation theory, has been derived analytically. The implementation has then been validated with respect to frozen phonons, and applied on materials where weak cohesive forces play a major role, i.e., argon, graphite, benzene, etc. We show that these dispersive contributions have to be considered to properly reproduce the experimental vibrational properties of these materials, although the lattice parameter change, coming from the ground-state relaxation with the proper functional, induces the most important change with respect to a treatment without dispersion corrections. In the curren...
Phonon dispersion in solids is usually calculated starting from model interaction potentials. In thi...
The problem of dispersion interaction in the DFT is reviewed, followed by a systematic study of the ...
A semiempirical addition of dispersive forces to conventional density functionals (DFT-D) has been i...
The density-functional linear-response approach to lattice-dynamical calculations in semiconductors ...
peer reviewedWe review calculations and measurements of the phonon dispersion relation of graphite. ...
We review calculations and measurements of the phonon dispersion relation of graphite. First-princip...
The density-functional linear-response approach to lattice-dynamical calculations in semiconductors ...
The method of dispersion correction as an add-on to standard Kohn-Sham density functional theory (DF...
Solids consisting of periodic lattice structures exhibit vibrational modes of their atomic nuclei. I...
Dispersion forces are critical for defining the crystal structures and vibrational potentials of mol...
A semiempirical addition of dispersive forces to conventional density functionals (DFT-D) has been i...
Starting from the knowledge of first-order changes of wave functions and density with respect to sma...
A semiempirical addition of dispersive forces to conventional density functionals (DFT-D) has been i...
A semiempirical addition of dispersive forces to conventional density functionals (DFT-D) has been i...
In this work, we discuss two approaches to calculate phonon spectra of crystals within the all-elect...
Phonon dispersion in solids is usually calculated starting from model interaction potentials. In thi...
The problem of dispersion interaction in the DFT is reviewed, followed by a systematic study of the ...
A semiempirical addition of dispersive forces to conventional density functionals (DFT-D) has been i...
The density-functional linear-response approach to lattice-dynamical calculations in semiconductors ...
peer reviewedWe review calculations and measurements of the phonon dispersion relation of graphite. ...
We review calculations and measurements of the phonon dispersion relation of graphite. First-princip...
The density-functional linear-response approach to lattice-dynamical calculations in semiconductors ...
The method of dispersion correction as an add-on to standard Kohn-Sham density functional theory (DF...
Solids consisting of periodic lattice structures exhibit vibrational modes of their atomic nuclei. I...
Dispersion forces are critical for defining the crystal structures and vibrational potentials of mol...
A semiempirical addition of dispersive forces to conventional density functionals (DFT-D) has been i...
Starting from the knowledge of first-order changes of wave functions and density with respect to sma...
A semiempirical addition of dispersive forces to conventional density functionals (DFT-D) has been i...
A semiempirical addition of dispersive forces to conventional density functionals (DFT-D) has been i...
In this work, we discuss two approaches to calculate phonon spectra of crystals within the all-elect...
Phonon dispersion in solids is usually calculated starting from model interaction potentials. In thi...
The problem of dispersion interaction in the DFT is reviewed, followed by a systematic study of the ...
A semiempirical addition of dispersive forces to conventional density functionals (DFT-D) has been i...