Virtual photons in imaginary time: Computing exact Casimir forces via standard numerical-electromagnetism techniques
arXiv:0705.3661 · doi:10.1103/PhysRevA.76.032106
Abstract
We describe a numerical method to compute Casimir forces in arbitrary geometries, for arbitrary dielectric and metallic materials, with arbitrary accuracy (given sufficient computational resources). Our approach, based on well-established integration of the mean stress tensor evaluated via the fluctuation-dissipation theorem, is designed to directly exploit fast methods developed for classical computational electromagnetism, since it only involves repeated evaluation of the Green's function for imaginary frequencies (equivalently, real frequencies in imaginary time). We develop the approach by systematically examining various formulations of Casimir forces from the previous decades and evaluating them according to their suitability for numerical computation. We illustrate our approach with a simple finite-difference frequency-domain implementation, test it for known geometries such as a cylinder and a plate, and apply it to new geometries. In particular, we show that a piston-like geometry of two squares sliding between metal walls, in both two and three dimensions with both perfect and realistic metallic materials, exhibits a surprising non-monotonic ``lateral'' force from the walls.
Published in Physical Review A, vol. 76, page 032106 (2007)
References in corpus (9)
- The Casimir effect within scattering theory
- On the torque on birefringent plates induced by quantum fluctuations
- Worldline algorithms for Casimir configurations
- Casimir force on a piston
- Casimir edge effects
- The Casimir force between rough metallic plates
- Roughness correction to the Casimir force : Beyond the Proximity Force Approximation
- Casimir interaction of two plates inside a cylinder
- Van der Waals interaction of excited media
Cited by in corpus (10)
- Casimir forces between arbitrary compact objects
- Casimir forces in a T operator approach
- Fluctuation induced quantum interactions between compact objects and a plane mirror
- Casimir forces between arbitrary compact objects: Scalar and electromagnetic field
- Nonmonotonic effects of parallel sidewalls on Casimir forces between cylinders
- Stable suspension and dispersion-induced transitions from repulsive Casimir forces between fluid-separated eccentric cylinders
- Vacuum Stress and Closed Paths in Rectangles, Pistons, and Pistols
- Casimir Pistons for Massive Scalar Fields
- Frequency spectrum of the Casimir force: interpretation and a paradox
- Numerical methods for fluctuation driven interactions between dielectrics