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Universal scaling laws for dispersion interactions
Published 19 Mar 2010 in quant-ph | (1003.3751v1)
Abstract: We study the scaling behaviour of dispersion potentials and forces under very general conditions. We prove that a rescaling of an arbitrary geometric arrangement by a factor a changes the atom-atom and atom-body potentials in the long-distance limit by factors 1/a7 and 1/a4, respectively and the Casimir force per unit area by 1/a4. In the short-distance regime, electric and magnetic bodies lead to different scaling behaviours. As applications, we present scaling functions for two atom-body potentials and display the equipotential lines of a plate-assisted two-atom potential.
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