The effect of an implicit medium on dispersive interactions of particle pairs is discussed, and simple expressions for the correction relative to vacuum are derived. We show that a single point Gauss quadrature leads to the intuitive result that the vacuum van der Waals C6-coefficient is screened by the permittivity squared of the environment evaluated near to the resonance frequencies of the interacting particles. This approximation should be particularly relevant if the medium is transparent at these frequencies. In this manuscript, we provide simple models and sets of parameters for commonly used solvents, atoms, and small molecules.publishedVersio
This book presents a self-contained derivation of van der Waals and Casimir type dispersion forces, ...
Theories for the effective polarizability of a small particle in a medium are presented using differ...
Dispersion forces, especially van der Waals forces as interactions between neutral and polarizable p...
The effect of an implicit medium on dispersive interactions of particle pairs is discussed, and simp...
The numerically exact evaluation of the van der Waals interaction, also known as Casimir interaction...
We discuss the relation between a description of the van der Waals interaction between colloidal par...
Selective reflection spectroscopy at an interface with a low-density resonant vapor, especially when...
We derive the retarded van der Waals interaction between two long thin parallel dielectric cylinders...
Dispersion forces such as van der Waals forces between two microscopic particles, the Casimir-Polder...
Dispersion forces such as van der Waals forces between two microscopic particles, the Casimir-Polder...
In a previous paper we derived an expression for the retarded Van der Waals interaction energy at ze...
A new variational single-product approximation to the van der Waals dispersion interaction is presen...
5 pages, 4 figures. Supplemental Material (7 pages). Units in Figure 2 and 3 correctedWe demonstrate...
We discuss different physical effects related to the uniform acceleration of atoms in vacuum, in the...
The van der Waals interaction between two ground-state atoms is calculated for two electrically or m...
This book presents a self-contained derivation of van der Waals and Casimir type dispersion forces, ...
Theories for the effective polarizability of a small particle in a medium are presented using differ...
Dispersion forces, especially van der Waals forces as interactions between neutral and polarizable p...
The effect of an implicit medium on dispersive interactions of particle pairs is discussed, and simp...
The numerically exact evaluation of the van der Waals interaction, also known as Casimir interaction...
We discuss the relation between a description of the van der Waals interaction between colloidal par...
Selective reflection spectroscopy at an interface with a low-density resonant vapor, especially when...
We derive the retarded van der Waals interaction between two long thin parallel dielectric cylinders...
Dispersion forces such as van der Waals forces between two microscopic particles, the Casimir-Polder...
Dispersion forces such as van der Waals forces between two microscopic particles, the Casimir-Polder...
In a previous paper we derived an expression for the retarded Van der Waals interaction energy at ze...
A new variational single-product approximation to the van der Waals dispersion interaction is presen...
5 pages, 4 figures. Supplemental Material (7 pages). Units in Figure 2 and 3 correctedWe demonstrate...
We discuss different physical effects related to the uniform acceleration of atoms in vacuum, in the...
The van der Waals interaction between two ground-state atoms is calculated for two electrically or m...
This book presents a self-contained derivation of van der Waals and Casimir type dispersion forces, ...
Theories for the effective polarizability of a small particle in a medium are presented using differ...
Dispersion forces, especially van der Waals forces as interactions between neutral and polarizable p...