Vacuum local and global electromagnetic self-energies for a point-like and an extended field source
arXiv:1208.5478 · doi:10.1140/epjc/s10052-013-2419-5
Abstract
We consider the electric and magnetic energy densities (or equivalently field fluctuations) in the space around a point-like field source in its ground state, after having subtracted the spatially uniform zero-point energy terms, and discuss the problem of their singular behavior at the source's position. We show that the assumption of a point-like source leads, for a simple Hamiltonian model of the interaction of the source with the electromagnetic radiation field, to a divergence of the renormalized electric and magnetic energy density at the position of the source. We analyze in detail the mathematical structure of such singularity in terms of a delta function and its derivatives. We also show that an appropriate consideration of these singular terms solves an apparent inconsistency between the total field energy and the space integral of its density. Thus the finite field energy stored in these singular terms gives an important contribution to the self-energy of the source. We then consider the case of an extended source, smeared out over a finite volume and described by an appropriate form factor. We show that in this case all divergences in local quantities such as the electric and the magnetic energy density, as well as any inconsistency between global and space-integrated local self-energies, disappear.
8 pages. The final publication is available at link.springer.com
References in corpus (10)
- Casimir forces between arbitrary compact objects
- Casimir forces in a T operator approach
- Casimir energy between a plane and a sphere in electromagnetic vacuum
- Casimir force between sharp-shaped conductors
- On the vacuum energy of a spherical plasma shell
- Local and Global Casimir Energies for a Semitransparent Cylindrical Shell
- Casimir-Polder forces, boundary conditions and fluctuations
- Boundary divergences in vacuum self-energies and quantum field theory in curved spacetime
- Electromagnetic field fluctuations near a dielectric-vacuum boundary and surface divergences in the ideal conductor limit
- Surface Vacuum Energy in Cutoff Models: Pressure Anomaly and Distributional Gravitational Limit
Cited by in corpus (7)
- Dispersion Interactions between Neutral Atoms and the Quantum Electrodynamical Vacuum
- Vacuum Casimir energy densities and field divergences at boundaries
- Casimir effect for scalar current densities in topologically nontrivial spaces
- Dynamical Casimir-Polder force between an excited atom and a conducting wall
- Nonequilibrium dressing in a cavity with a movable reflecting mirror
- A microscopic approach to Casimir and Casimir-Polder forces between metallic bodies
- Time-dependent resonance interaction energy between two entangled atoms under non-equilibrium conditions