Thermal corrections to the Casimir effect
arXiv:quant-ph/0605005 · doi:10.1088/1367-2630/8/10/236
Abstract
The Casimir effect, reflecting quantum vacuum fluctuations in the electromagnetic field in a region with material boundaries, has been studied both theoretically and experimentally since 1948. The forces between dielectric and metallic surfaces both plane and curved have been measured at the 10 to 1 percent level in a variety of room-temperature experiments, and remarkable agreement with the zero-temperature theory has been achieved. In fitting the data various corrections due to surface roughness, patch potentials, curvature, and temperature have been incorporated. It is the latter that is the subject of the present article. We point out that, in fact, no temperature dependence has yet been detected, and that the experimental situation is still too fluid to permit conclusions about thermal corrections to the Casimir effect. Theoretically, there are subtle issues concerning thermodynamics and electrodynamics which have resulted in disparate predictions concerning the nature of these corrections. However, a general consensus has seemed to emerge that suggests that the temperature correction to the Casimir effect is relatively large, and should be observable in future experiments involving surfaces separated at the few micrometer scale.
21 pages, 9 eps figures, uses iopart.cls. Final version to be published in New Journal of Physics, contains Conclusion and clarified remarks
References in corpus (5)
- The Casimir effect for a sphere and a cylinder in front of plane and corrections to the proximity force theorem
- Roughness correction to the Casimir force : Beyond the Proximity Force Approximation
- Comment on " Low-frequency character of the Casimir force between metallic films"
- Temperature Dependence of the Casimir Force for Metals
- The Low-Frequency Character of the Thermal Correction to the Casimir Force between Metallic Films
Cited by in corpus (22)
- Worldline algorithms for Casimir configurations
- Thermal Casimir vs Casimir-Polder forces: Equilibrium and non-equilibrium forces
- Casimir Interactions for Anisotropic Magnetodielectric Metamaterials
- Influence of slab thickness on the Casimir force
- Casimir energy between a plane and a sphere in electromagnetic vacuum
- Casimir interaction of two plates inside a cylinder
- Casimir effect in a superconducting cavity and the thermal controversy
- Analytic approach to the thermal Casimir force between metal and dielectric
- Microscopic theory of the Casimir force at thermal equilibrium: large-separation asymptotics
- Recent Developments in the Casimir Effect
- Anomalous temperature dependence of the Casimir force for thin metal films
- The Casimir effect in the nanoworld
- Interplay between geometry and temperature for inclined Casimir plates
- Casimir interaction: pistons and cavity
- Bose-Einstein Condensation and Casimir Effect of Trapped Ideal Bose Gas in between two Slabs
- Casimir Force on Real Materials - the Slab and Cavity Geometry
- Casimir energy and geometry : beyond the Proximity Force Approximation
- Casimir Energies: Temperature Dependence, Dispersion, and Anomalies
- Casimir energies with finite-width mirrors
- Frequency spectrum of the Casimir force: interpretation and a paradox
- Casimir energy of two plates inside a cylinder
- Johnson-Nyquist noise and the Casimir force between real metals at nonzero temperature