Temperature-independent Casimir-Polder forces in arbitrary geometries
arXiv:1106.5015 · doi:10.1103/PhysRevA.84.060501
Abstract
We show that the Casimir-Polder potential of a particle in an energy eigenstate at nonretarded distance from a well-conducting body of arbitrary shape is independent of the environment temperature. This is true even when the thermal photon numbers at the relevant atomic transition energies are large. A compact expression is obtained for the temperature-independent potential, which can greatly simplify calculations in nontrivial geometries for experimentally relevant systems such as Rydberg atoms and polar molecules. We give criteria for the validity of our temperature-independent result. They are illustrated by numerical studies of a particle near a gold sphere or inside a gold cylindrical cavity.
5 pages, 2 figures
References in corpus (7)
- New asymptotic behaviour of the surface-atom force out of thermal equilibrium
- Thermal Casimir vs Casimir-Polder forces: Equilibrium and non-equilibrium forces
- The van der Waals energy of atomic systems near absorbing and dispersing bodies
- Thermal Casimir-Polder shifts in Rydberg atoms near metallic surfaces
- Local-field correction to one- and two-atom van der Waals interactions
- Temperature-invariant Casimir-Polder forces despite large thermal photon numbers
- Casimir-Polder potential and transition rate in resonating cylindrical cavities
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