For the paradigmatic case of H<sub>2</sub> dissociation, we compare state-of-the-art many-body perturbation theory in the GW approximation and density-functional theory in the exact-exchange plus random-phase approximation (RPA) for the correlation energy. For an unbiased comparison and to prevent spurious starting point effects, both approaches are iterated to full self-consistency (i.e., sc-RPA and sc-GW). The exchange-correlation diagrams in both approaches are topologically identical, but in sc-RPA they are evaluated with noninteracting and in sc-GW with interacting Green functions. This has a profound consequence for the dissociation region, where sc-RPA is superior to sc-GW. We argue that for a given diagrammatic expansion, sc-RPA out...
Accurate models of electron correlation are key to understanding and predicting important physical c...
The random-phase approximation (RPA) for the electron correlation energy, combined with the exact-ex...
We present a renormalized second-order perturbation theory (rPT2), based on a Kohn-Sham (KS) referen...
For the paradigmatic case of H2 dissociation, we compare state-of-the-art many-body perturbation the...
We show that density functional theory within the RPA (random phase approximation for the exchange-c...
We have calculated the correlation energy of the homogeneous electron gas (HEG) and the dissociation...
Self-consistent correlation potentials for H2 and LiH for various inter-atomic separations are obtai...
The random-phase approximation (RPA) for the electron correlation energy, combined with the exact-ex...
In the past decade, the random phase approximation (RPA) has emerged as a promising post-Kohn-Sham m...
We investigate static correlation and delocalization errors in the self-consistent GW and random-pha...
Local and semilocal functional like the local density (LDA) and generalized gradient approximations ...
We investigate static correlation and delocalization errors in the self-consistent GW and random-pha...
We develop a new family of electronic structure methods for capturing at the same time the dynamic a...
Density functional theory (DFT) within standard local density/generalized gradient approximations (...
We propose a description of nonequilibrium systems via a simple protocol that combines exchange-corr...
Accurate models of electron correlation are key to understanding and predicting important physical c...
The random-phase approximation (RPA) for the electron correlation energy, combined with the exact-ex...
We present a renormalized second-order perturbation theory (rPT2), based on a Kohn-Sham (KS) referen...
For the paradigmatic case of H2 dissociation, we compare state-of-the-art many-body perturbation the...
We show that density functional theory within the RPA (random phase approximation for the exchange-c...
We have calculated the correlation energy of the homogeneous electron gas (HEG) and the dissociation...
Self-consistent correlation potentials for H2 and LiH for various inter-atomic separations are obtai...
The random-phase approximation (RPA) for the electron correlation energy, combined with the exact-ex...
In the past decade, the random phase approximation (RPA) has emerged as a promising post-Kohn-Sham m...
We investigate static correlation and delocalization errors in the self-consistent GW and random-pha...
Local and semilocal functional like the local density (LDA) and generalized gradient approximations ...
We investigate static correlation and delocalization errors in the self-consistent GW and random-pha...
We develop a new family of electronic structure methods for capturing at the same time the dynamic a...
Density functional theory (DFT) within standard local density/generalized gradient approximations (...
We propose a description of nonequilibrium systems via a simple protocol that combines exchange-corr...
Accurate models of electron correlation are key to understanding and predicting important physical c...
The random-phase approximation (RPA) for the electron correlation energy, combined with the exact-ex...
We present a renormalized second-order perturbation theory (rPT2), based on a Kohn-Sham (KS) referen...