Medium effects on the van der Waals force
M. S. Tomas
Abstract
We consider the van der Waals interaction between two ground-state atoms embedded in adjacent semi-infinite magnetodielectric media, with emphasis on medium effects on it. We demonstrate that, in this case, at small atom-atom distances the van der Waals interaction is screened by the surrounding media in the same way as in an effective (single) medium. At larger atomic distances, however, its dependence on the material parameters of the system and the positions of the atoms is more complex. We also calculate the Casimir-Polder potential of an atom A arising from a uniform distribution of atoms B in the medium across the interface. Comparison of this potential with the corresponding result deduced from the Casimir force on a thin composite slab in front of a composite semi-infinite medium, both obeying the Clausius-Mossotti relation, suggests a hint on how to improve a well-known formula for the van der Waals potential with respect to the local-field effects.
Create a lesson
Related papers
Towards unsupervised representation learning for quantum data: quantum models with inference and generation
Robin Lorenz, Eric Brunner, Marcello Benedetti
Spatial correlations of photons interacting via transverse Rydberg blockade
Bankim Chandra Das, Daniil Svirskiy, Matthias Metternich et al.
Generation of multicomponent Schrödinger cat states in schemes with measurement of Gaussian states
E. A. Nesterova, S. B. Korolev
Which Otto Engine Is the Fastest?
Idriss Hank Nkouatchoua Ngueya, Marcin Łobejko
Optimization Landscape Geometry in VQE for Frustrated Quantum Spin Models
Vojtěch Novák, Ivan Zelinka, Swagatam Das et al.
Codes for Quantum Secret Sharing with a Helper
Eric Chitambar, Sarah Hagen, David W. Kribs et al.