The theoretical description of sparse matter attracts much interest, in particular for those ground-state properties that can be described by density functional theory. One proposed approach, the van der Waals density functional (vdW-DF) method, rests on strong physical foundations and offers simple yet accurate and robust functionals. A very recent functional within this method called vdW-DF-cx [K. Berland and P. Hyldgaard, Phys. Rev. B89, 035412 (2014)] stands out in its attempt to use an exchange energy derived from the same plasmon-based theory from which the nonlocal correlation energy was derived. Encouraged by its good performance for solids, layered materials, and aromatic molecules, we apply it to several systems that are character...
Modeling the adsorption of atoms and molecules on surfaces requires ecient electronic structure meth...
We devise a nonlocal correlation energy functional that describes the entire range of dispersion int...
Detailed physisorption data from experiment for the H2 molecule on low-index Cu surfaces challenge t...
The theoretical description of sparse matter attracts much interest, in particular for those ground-...
Sparse matter is abundant and has both strong local bonds and weak nonbonding forces, in particular ...
Is the plasmon description within the nonlocal correlation of the van der Waals density functional b...
Noncovalent van der Waals (vdW) interactions are responsible for a wide range of phenomena in matter...
AbstractIn this article techniques for including dispersion interactions within density functional t...
We review the screening nature and many-body physics foundation of the van der Waals density functio...
We introduce a new, general-purpose, range-separated hybrid van der Waals density functional termed ...
We propose a second version of the van der Waals density functional of Dion et al. [Phys. Rev. Lett....
Dispersion (van der Waals or vdW) interactions are long-range, non-local in nature, and can be impor...
The density functional theory is, in principle, an exact ground-state method for interacting electro...
Sparse matter is abundant in Nature. It encompasses systems characterized by an intrinsic low densit...
A “best-of-both-worlds” van der Waals (vdW) density functional is constructed, seamlessly supplement...
Modeling the adsorption of atoms and molecules on surfaces requires ecient electronic structure meth...
We devise a nonlocal correlation energy functional that describes the entire range of dispersion int...
Detailed physisorption data from experiment for the H2 molecule on low-index Cu surfaces challenge t...
The theoretical description of sparse matter attracts much interest, in particular for those ground-...
Sparse matter is abundant and has both strong local bonds and weak nonbonding forces, in particular ...
Is the plasmon description within the nonlocal correlation of the van der Waals density functional b...
Noncovalent van der Waals (vdW) interactions are responsible for a wide range of phenomena in matter...
AbstractIn this article techniques for including dispersion interactions within density functional t...
We review the screening nature and many-body physics foundation of the van der Waals density functio...
We introduce a new, general-purpose, range-separated hybrid van der Waals density functional termed ...
We propose a second version of the van der Waals density functional of Dion et al. [Phys. Rev. Lett....
Dispersion (van der Waals or vdW) interactions are long-range, non-local in nature, and can be impor...
The density functional theory is, in principle, an exact ground-state method for interacting electro...
Sparse matter is abundant in Nature. It encompasses systems characterized by an intrinsic low densit...
A “best-of-both-worlds” van der Waals (vdW) density functional is constructed, seamlessly supplement...
Modeling the adsorption of atoms and molecules on surfaces requires ecient electronic structure meth...
We devise a nonlocal correlation energy functional that describes the entire range of dispersion int...
Detailed physisorption data from experiment for the H2 molecule on low-index Cu surfaces challenge t...