The grand potential of a system of interacting electrons is considered as a stationary point of a self-energy functional. It is shown that a rigorous evaluation of the functional is possible for self-energies that are representable within a certain reference system. The variational scheme allows to construct new non-perturbative and thermodynamically consistent approximations. Numerical results illustrate the practicability of the method
One of the fundamental problems in condensed-matter physics and quan-tum chemistry is the theoretica...
In this paper we present a systematic method to solve the variational problem of the derivation of a...
We derive variational expressions for the grand potential or action in terms of the many-body Green ...
The self-energy functional theory (SFT) is generalized to describe the real-time dynamics...
A self-consistent field method is presented within density matrix functional theory. The computation...
Density-functional theory is a powerful method to calculate total energies of large systems of inter...
The old variational functional for the total energy of a many-electron system proposed by Luttinger ...
We present an alternative to the Kohn-Sham formulation of density-functional theory for the ground-s...
It was recently proposed to use variational functionals based on many-body perturbation theory for t...
A new local density functional approach for the calculation of correlation energies of many-electron...
We propose a new method for calculating total energies of systems of interacting electrons, which re...
We have calculated total energies of atoms and diatomic molecules from the Luttinger-Ward functional...
Abstract: In potential-functional theory the total electronic energy is expressed as a functional of...
It was recently proposed to use variational functionals based on manybody perturbation theory for th...
Density functional method is applied for strongly correlated systems. Based on the assumption that t...
One of the fundamental problems in condensed-matter physics and quan-tum chemistry is the theoretica...
In this paper we present a systematic method to solve the variational problem of the derivation of a...
We derive variational expressions for the grand potential or action in terms of the many-body Green ...
The self-energy functional theory (SFT) is generalized to describe the real-time dynamics...
A self-consistent field method is presented within density matrix functional theory. The computation...
Density-functional theory is a powerful method to calculate total energies of large systems of inter...
The old variational functional for the total energy of a many-electron system proposed by Luttinger ...
We present an alternative to the Kohn-Sham formulation of density-functional theory for the ground-s...
It was recently proposed to use variational functionals based on many-body perturbation theory for t...
A new local density functional approach for the calculation of correlation energies of many-electron...
We propose a new method for calculating total energies of systems of interacting electrons, which re...
We have calculated total energies of atoms and diatomic molecules from the Luttinger-Ward functional...
Abstract: In potential-functional theory the total electronic energy is expressed as a functional of...
It was recently proposed to use variational functionals based on manybody perturbation theory for th...
Density functional method is applied for strongly correlated systems. Based on the assumption that t...
One of the fundamental problems in condensed-matter physics and quan-tum chemistry is the theoretica...
In this paper we present a systematic method to solve the variational problem of the derivation of a...
We derive variational expressions for the grand potential or action in terms of the many-body Green ...