New Features of the Thermal Casimir Force at Small Separations
F. Chen, G. L. Klimchitskaya, U. Mohideen, V. M. Mostepanenko
Abstract
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F. Chen, G. L. Klimchitskaya, U. Mohideen, V. M. Mostepanenko
Abstract
Open-access reader
The difference of the thermal Casimir forces at different temperatures between real metals is shown to increase with a decrease of the separation distance. This opens new opportunities for the demonstration of the thermal dependence of the Casimir force. Both configurations of two parallel plates and a sphere above a plate are considered. Different approaches to the theoretical description of the thermal Casimir force are shown to lead to different measurable predictions.
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The difference of the thermal Casimir forces at different temperatures between real metals is shown to increase with a decrease of the separation distance. This opens new opportunities for the demonstration of the thermal dependence of the Casimir force. Both configurations of two parallel plates and a sphere above a plate are considered. Different approaches to the theoretical description of the thermal Casimir force are shown to lead to different measurable predictions.
Key concepts: Casimir effect, Casimir pressure, Thermal, Physics, Classical mechanics, Thermal fluctuations, Mechanics, Thermodynamics