Physical Review Letters · 2008 · 48 citations · 30 references
Materials ScienceThin Metal FilmsCasimir ForceExperimental ObservationEngineeringPhysicsSurface ScienceApplied PhysicsCondensed Matter PhysicsVacuum DeviceThin FilmsAnomalous Temperature DependenceDrude Dispersive ModelThin Film ProcessingNanophotonics
Within the framework of the Drude dispersive model, we predict an unusual nonmonotonic temperature dependence of the Casimir force for thin metal films. For certain conditions, this force decreases with temperature due to the decrease of the metallic conductivity, whereas the force increases at high temperatures due to the increase of the thermal radiation pressure. We consider the attraction of a film to: either (i) a bulk ideal metal with a planar boundary, or (ii) a bulk metal sphere (lens). The experimental observation of the predicted decreasing temperature dependence of the Casimir force can put an end to the long-standing discussion on the role of the electron relaxation in the Casimir effect.
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J. Błocki, J. Randrup, W.J. Świa̧tecki et al. · Annals of Physics · 1977 · 1.5K citations
Quantum Mechanical Actuation of Microelectromechanical Systems by the Casimir Force
H. B. Chan, Vladimir Aksyuk, R. N. Kleiman et al. · Science · 2001 · 851 citations
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