It is shown that the interaction energy of two defects in a metal can be computed consistently from one-electron effective potentials obtained by flattening out the Friedel oscillations of the electron charge density beyond a definite distance from each defect.On montre qu'on peut calculer de façon cohérente l'énergie d'interaction de deux défauts dans un métal à partir de potentiels effectifs obtenus en aplatissant les oscillations de Friedel de la densité de charge électronique au-delà d'une distance définie de chaque défaut
LES INTERACTIONS ELECTRON-ELECTRON LIMITENT LA COHERENCE QUANTIQUE DES ELECTRONS DANS LES METAUX ET ...
The transition probability for the scattering of conduction electrons at point defects in metals is ...
The interaction energy of a positronium atom interacting with a metal surface is obtained as a funct...
It is shown that the interaction energy of two defects in a metal can be computed consistently from ...
The study of the electronic structure of defects in metals shows the existence of oscillations in th...
L'application de la méthode de Hartree et de la théorie des pseudo-potentiels permet d'écrire l'éner...
In f. c. c. metals, threshold énergies for atomic displacements can be computed classically from an ...
We first briefly explain how the total energy of a metal can be written as a sum of pair interaction...
An expression is derived for the total energy of a system of interacting atoms based on an ansatz fo...
The electronic energies of interaction of a point defect with interfaces and grain boundaries are ca...
Abstract. We demonstrate quantitative methods for estimating that part of the elastic interaction en...
The static relaxation program DEVIL has been updated to use N-body Finnis-Sinclair potentials. Initi...
Due to the long-range screening behavior of electrons in metals, interactions between excited electr...
This work represents a contribution to the problem of calculating point defect energetics in solids ...
We propose a method to study various defects using an energy density formulation in density function...
LES INTERACTIONS ELECTRON-ELECTRON LIMITENT LA COHERENCE QUANTIQUE DES ELECTRONS DANS LES METAUX ET ...
The transition probability for the scattering of conduction electrons at point defects in metals is ...
The interaction energy of a positronium atom interacting with a metal surface is obtained as a funct...
It is shown that the interaction energy of two defects in a metal can be computed consistently from ...
The study of the electronic structure of defects in metals shows the existence of oscillations in th...
L'application de la méthode de Hartree et de la théorie des pseudo-potentiels permet d'écrire l'éner...
In f. c. c. metals, threshold énergies for atomic displacements can be computed classically from an ...
We first briefly explain how the total energy of a metal can be written as a sum of pair interaction...
An expression is derived for the total energy of a system of interacting atoms based on an ansatz fo...
The electronic energies of interaction of a point defect with interfaces and grain boundaries are ca...
Abstract. We demonstrate quantitative methods for estimating that part of the elastic interaction en...
The static relaxation program DEVIL has been updated to use N-body Finnis-Sinclair potentials. Initi...
Due to the long-range screening behavior of electrons in metals, interactions between excited electr...
This work represents a contribution to the problem of calculating point defect energetics in solids ...
We propose a method to study various defects using an energy density formulation in density function...
LES INTERACTIONS ELECTRON-ELECTRON LIMITENT LA COHERENCE QUANTIQUE DES ELECTRONS DANS LES METAUX ET ...
The transition probability for the scattering of conduction electrons at point defects in metals is ...
The interaction energy of a positronium atom interacting with a metal surface is obtained as a funct...