Casimir Interaction Between a Plane and a Sphere: Correction to the Proximity-Force Approximation at Intermediate Temperatures
Quantum Physics
2021-05-11 v1
Abstract
We consider the Casimir interaction energy between a plane and a sphere of radius at finite temperature as a function of the distance of closest approach . Typical experimental conditions are such that the thermal wavelength satisfies the condition . We derive the leading correction to the proximity-force approximation valid for such intermediate temperatures by developing the scattering formula in the plane-wave basis. Our analytical result captures the joint effect of the spherical geometry and temperature and is written as a sum of temperature-dependent logarithmic terms. Surprisingly, two of the logarithmic terms arise from the Matsubara zero-frequency contribution.
Cite
@article{arxiv.2103.13927,
title = {Casimir Interaction Between a Plane and a Sphere: Correction to the Proximity-Force Approximation at Intermediate Temperatures},
author = {Vinicius Henning and Benjamin Spreng and Paulo A. Maia Neto and Gert-Ludwig Ingold},
journal= {arXiv preprint arXiv:2103.13927},
year = {2021}
}
Comments
20 pages, 3 figures