We propose a way to include magnetic dipole-dipole interactions in density functional theory calculations. To this end, we derive an approximation to the exchange-correlation energy functional associated with the spin-spin correction to the Coulomb force in the Breit-Pauli Hamiltonian. The local spin-density approximation is shown to be identically zero. First-order nonlocal corrections are evaluated analytically within the linear response to a noncollinear external magnetic field. The functional obtained is based on the exact-exchange energy of the magnetic electron gas with dipolar interactions and is estimated to be relevant at interatomic distances, or in the low electron density limit, where it amounts to one-quarter of the magnetostat...
We employ density functional theory to study in detail the crystallization of super-paramagnetic par...
The exchange energy of an arbitrary collinear-spin many-body system in an external magnetic field is...
International audienceWe present a new and simple scheme that aims to decompose into its main physic...
We propose a way to include magnetic dipole-dipole interactions in density functional theory calcula...
Density functional theory (DFT) has grown to become by far the most widely applied method in the mod...
Density functional theory and its application for the simulation of magnetic properties of condensed...
In this paper we assess the accuracy of the local density approximation (LDA) based expressions for ...
We study the effects of magnetic fields in the context of magnetic field density-functional theory (...
We show that, by constructing a magnetic-field density functional theory for the response of many-el...
In this paper it is argued that the use of density functional theory (DFT) to solve the exact, non-r...
Based on exact limits and quantum Monte Carlo simulations, we obtain, at any density and spin polari...
The performance of density-functional theory to solve the exact, nonrelativistic, many-electron prob...
We study the effects of magnetic fields in the context of magnetic field density-functional theory (...
Magnetic properties are an important application area in quantum chemistry. However, for the most wi...
The authors' magnetic field density functional theory is extended to include electron spin-dependent...
We employ density functional theory to study in detail the crystallization of super-paramagnetic par...
The exchange energy of an arbitrary collinear-spin many-body system in an external magnetic field is...
International audienceWe present a new and simple scheme that aims to decompose into its main physic...
We propose a way to include magnetic dipole-dipole interactions in density functional theory calcula...
Density functional theory (DFT) has grown to become by far the most widely applied method in the mod...
Density functional theory and its application for the simulation of magnetic properties of condensed...
In this paper we assess the accuracy of the local density approximation (LDA) based expressions for ...
We study the effects of magnetic fields in the context of magnetic field density-functional theory (...
We show that, by constructing a magnetic-field density functional theory for the response of many-el...
In this paper it is argued that the use of density functional theory (DFT) to solve the exact, non-r...
Based on exact limits and quantum Monte Carlo simulations, we obtain, at any density and spin polari...
The performance of density-functional theory to solve the exact, nonrelativistic, many-electron prob...
We study the effects of magnetic fields in the context of magnetic field density-functional theory (...
Magnetic properties are an important application area in quantum chemistry. However, for the most wi...
The authors' magnetic field density functional theory is extended to include electron spin-dependent...
We employ density functional theory to study in detail the crystallization of super-paramagnetic par...
The exchange energy of an arbitrary collinear-spin many-body system in an external magnetic field is...
International audienceWe present a new and simple scheme that aims to decompose into its main physic...