We establish a general relation between dispersion forces. First, based on QED in causal media, leading-order perturbation theory is used to express both the single-atom Casimir-Polder and the two-atom van der Waals potentials in terms of the atomic polarizabilities and the Green tensor for the body-assisted electromagnetic field. Endowed with this geometry-independent framework, we then employ the Born expansion of the Green tensor together with the Clausius-Mosotti relation to prove that the macroscopic Casimir-Polder potential of an atom in the presence of dielectric bodies is due to an infinite sum of its microscopic many-atom van der Waals interactions with the atoms comprising the bodies. This theorem holds for inhomogeneous, dispersi...
We consider the van der Waals force involving excited atoms in general environments, constituted by ...
We study the diamagnetic interaction between a ground-state atom, which is located at a distance z f...
We present an approach for computing long-range van der Waals (vdW) interactions between complex mol...
A general theory of the Casimir-Polder interaction of single atoms with dispersing and absorbing mag...
This book presents a self-contained derivation of van der Waals and Casimir type dispersion forces, ...
We consider the Casimir-Polder interaction energy between a metallic nanoparticle and a metallic pla...
We consider the Casimir interaction between macroscopic metallic objects in terms of the dispersion ...
We investigate theoretically the Casimir-Polder potential of an atom which is driven by a laser fiel...
Intermolecular forces responsible for adhesion and cohesion can be classified according to their ori...
We reexamine the dispersion interaction between two atoms in external electromagnetic fields, provid...
We review different aspects of atom–atom and atom–wall Casimir–Polder forces. We first discuss the r...
In this thesis, we have used macroscopic quantum electrodynamics to extend the concept of dispersion...
Dispersion forces such as van der Waals forces between two microscopic particles, the Casimir-Polder...
The microscopic mechanisms for universality of Casimir forces between macroscopic conductors are dis...
Dispersion forces such as van der Waals forces between two microscopic particles, the Casimir-Polder...
We consider the van der Waals force involving excited atoms in general environments, constituted by ...
We study the diamagnetic interaction between a ground-state atom, which is located at a distance z f...
We present an approach for computing long-range van der Waals (vdW) interactions between complex mol...
A general theory of the Casimir-Polder interaction of single atoms with dispersing and absorbing mag...
This book presents a self-contained derivation of van der Waals and Casimir type dispersion forces, ...
We consider the Casimir-Polder interaction energy between a metallic nanoparticle and a metallic pla...
We consider the Casimir interaction between macroscopic metallic objects in terms of the dispersion ...
We investigate theoretically the Casimir-Polder potential of an atom which is driven by a laser fiel...
Intermolecular forces responsible for adhesion and cohesion can be classified according to their ori...
We reexamine the dispersion interaction between two atoms in external electromagnetic fields, provid...
We review different aspects of atom–atom and atom–wall Casimir–Polder forces. We first discuss the r...
In this thesis, we have used macroscopic quantum electrodynamics to extend the concept of dispersion...
Dispersion forces such as van der Waals forces between two microscopic particles, the Casimir-Polder...
The microscopic mechanisms for universality of Casimir forces between macroscopic conductors are dis...
Dispersion forces such as van der Waals forces between two microscopic particles, the Casimir-Polder...
We consider the van der Waals force involving excited atoms in general environments, constituted by ...
We study the diamagnetic interaction between a ground-state atom, which is located at a distance z f...
We present an approach for computing long-range van der Waals (vdW) interactions between complex mol...