We investigate static correlation and delocalization errors in the self-consistent GW and random-phase approximation (RPA) by studying molecular dissociation of the H2 and LiH molecules. Although both approximations contain topologically identical diagrams, the nonlocality and frequency dependence of the GW self-energy crucially influence the different energy contributions to the total energy as compared to the use of a static local potential in the RPA. The latter leads to significantly larger correlation energies, which allow for a better description of static correlation at intermediate bond distances. The substantial error found in GW is further analyzed by comparing spin-restricted and spin-unrestricted calculations. At large but finit...
We extend to strongly correlated molecular systems the recently introduced basis-set incompleteness ...
It is commonly accepted in the scientific literature that the static correlation energy, <i>E</i><su...
It has previously been shown that self-consistent-charge density-functional tight-binding (SCC-DFTB)...
We investigate static correlation and delocalization errors in the self-consistent GW and random-pha...
We investigate static correlation and delocalization errors in the self-consistent GW and random-pha...
Self-consistent correlation potentials for H2 and LiH for various inter-atomic separations are obtai...
We show that density functional theory within the RPA (random phase approximation for the exchange-c...
The random phase approximation (RPA) is thought to be a successful method; however, basic errors hav...
For the paradigmatic case of H<sub>2</sub> dissociation, we compare state-of-the-art many-body pertu...
In a recent paper [Phys. Rev. B 90, 125150 (2014)], we showed that the random phase approximation wi...
The generalized gradient approximation (GGA) corrects many of the shortcomings of the local spin-den...
Electron correlation in finite and extended systems is often described in an effective single-partic...
The failure of many density functional approximations can be traced to their behavior under fraction...
The development of post-Hartree–Fock (post-HF) energy decomposition schemes that are able to decompo...
In this work, we consider the particle-hole random phase approximation (phRPA), an approximation to ...
We extend to strongly correlated molecular systems the recently introduced basis-set incompleteness ...
It is commonly accepted in the scientific literature that the static correlation energy, <i>E</i><su...
It has previously been shown that self-consistent-charge density-functional tight-binding (SCC-DFTB)...
We investigate static correlation and delocalization errors in the self-consistent GW and random-pha...
We investigate static correlation and delocalization errors in the self-consistent GW and random-pha...
Self-consistent correlation potentials for H2 and LiH for various inter-atomic separations are obtai...
We show that density functional theory within the RPA (random phase approximation for the exchange-c...
The random phase approximation (RPA) is thought to be a successful method; however, basic errors hav...
For the paradigmatic case of H<sub>2</sub> dissociation, we compare state-of-the-art many-body pertu...
In a recent paper [Phys. Rev. B 90, 125150 (2014)], we showed that the random phase approximation wi...
The generalized gradient approximation (GGA) corrects many of the shortcomings of the local spin-den...
Electron correlation in finite and extended systems is often described in an effective single-partic...
The failure of many density functional approximations can be traced to their behavior under fraction...
The development of post-Hartree–Fock (post-HF) energy decomposition schemes that are able to decompo...
In this work, we consider the particle-hole random phase approximation (phRPA), an approximation to ...
We extend to strongly correlated molecular systems the recently introduced basis-set incompleteness ...
It is commonly accepted in the scientific literature that the static correlation energy, <i>E</i><su...
It has previously been shown that self-consistent-charge density-functional tight-binding (SCC-DFTB)...