arXiv · 0903.4771
Casimir interaction from magnetically coupled eddy currents
Abstract
We study the quantum and thermal fluctuations of eddy (Foucault) currents in thick metallic plates. A Casimir interaction between two plates arises from the coupling via quasi-static magnetic fields. As a function of distance, the relevant eddy current modes cross over from a quantum to a thermal regime. These modes alone reproduce previously discussed thermal anomalies of the electromagnetic Casimir interaction between good conductors. In particular, they provide a physical picture for the Casimir entropy whose nonzero value at zero temperature arises from a correlated, glassy state.
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Francesco Intravaia, Carsten Henkel. 2009-03-27. Casimir interaction from magnetically coupled eddy currents. https://doi.org/10.1103/physrevlett.103.130405
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