Casimir force between a sphere and a plane: spectral representation formalism
Abstract
We develop a spectral representation formalism to calculate the Casimir force in the non-retarded limit, between a spherical particle and a substrate, both with arbitrary local dielectric properties. This spectral formalism allows one to do a systematic study of the force as a function of the geometrical variables separately from the dielectric properties. We found that the force does not follow a simple power-law as a function of the separation between the sphere and substrate. As a consequence, the non-retarded Casimir force is enhanced by several orders of magnitude as the sphere approaches the substrate, while at large separations the dipolar term dominates the force.
Keywords
Cite
@article{arxiv.quant-ph/0312090,
title = {Casimir force between a sphere and a plane: spectral representation formalism},
author = {Cecilia Noguez and C. E. Roman-Velazquez},
journal= {arXiv preprint arXiv:quant-ph/0312090},
year = {2007}
}
Comments
6 pages, contribution to the 6th Workshop on Quantum Field Theory under the Influence of External Conditions (QFEXT03), Norman, Oklahoma, September 15-19, 2003