We present the ab initio phonon dispersions of magnetic bcc Fe and fee Ni. Our calculations are carried out in the framework of density functional perturbation theory (DFPT), using ultrasoft pseudopotentials, spin-polarized generalized gradient approximations, and nonlinear core; corrections. The implementation of the above techniques within DFPT is discussed. We find that these approximations, together, provide phonon dispersions which are in good agreement with experiment, while the local spin density approximation systematically overestimates the experimental frequencies
We report a computational theoretical investigation of electron spin-flip scattering induced by the ...
The density functional generalized-gradient approximation with the local Coulomb interaction U and ...
We compare the performance of the Wu and Cohen (WC, 2006 Phys. Rev. B 73 235116) and of the PBEsol (...
We present the ab initio phonon dispersions of magnetic bcc Fe and fee Ni. Our calculations are carr...
I present the ab-initio phonon dispersions of fcc-Pb calculated within the framework of density fun...
We present a first-principles theoretical approach to calculate temperature dependent phonon dispers...
The lattice dynamics in magnetic materials, such as Fe depends on the degree of disorder of the atom...
We present an implementation of time-dependent density functional perturbation theory for spin fluct...
An ab initio based framework for quantitatively assessing the phonon contribution due to magnon-phon...
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 introduce an extension of the density functional perturbation theory (DFPT) that allows self-cons...
The vibrational properties of ZnSe, ZnTe, CdSe, and CdTe are determined by density-functional pertur...
Abstract: The interrelation of Invar and martensitic behaviour in transition metal alloys like Fe65...
Modern calculations are becoming an essential, complementary tool to inelastic x-ray scattering stud...
We report a computational theoretical investigation of electron spin-flip scattering induced by the ...
The density functional generalized-gradient approximation with the local Coulomb interaction U and ...
We compare the performance of the Wu and Cohen (WC, 2006 Phys. Rev. B 73 235116) and of the PBEsol (...
We present the ab initio phonon dispersions of magnetic bcc Fe and fee Ni. Our calculations are carr...
I present the ab-initio phonon dispersions of fcc-Pb calculated within the framework of density fun...
We present a first-principles theoretical approach to calculate temperature dependent phonon dispers...
The lattice dynamics in magnetic materials, such as Fe depends on the degree of disorder of the atom...
We present an implementation of time-dependent density functional perturbation theory for spin fluct...
An ab initio based framework for quantitatively assessing the phonon contribution due to magnon-phon...
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 introduce an extension of the density functional perturbation theory (DFPT) that allows self-cons...
The vibrational properties of ZnSe, ZnTe, CdSe, and CdTe are determined by density-functional pertur...
Abstract: The interrelation of Invar and martensitic behaviour in transition metal alloys like Fe65...
Modern calculations are becoming an essential, complementary tool to inelastic x-ray scattering stud...
We report a computational theoretical investigation of electron spin-flip scattering induced by the ...
The density functional generalized-gradient approximation with the local Coulomb interaction U and ...
We compare the performance of the Wu and Cohen (WC, 2006 Phys. Rev. B 73 235116) and of the PBEsol (...