English

Casimir Self-Interaction Energy Density of Quantum Electrodynamic Fields

High Energy Physics - Theory 2023-01-25 v1

Abstract

Quantum electrodynamic fields possess fluctuations corresponding to transient particle/antiparticle dipoles, which can be characterized by a non-vanishing polarizability density. Here, we extend a recently proposed quantum scaling law to describe the volumetric and radial polarizability density of a quantum field corresponding to electrons and positrons and derive the Casimir self-interaction energy (SIE) density of the field, EˉSIE\bar{E}_{\rm{SIE}}, in terms of the fine-structure constant. The proposed model obeys the cosmological equation of state w=1w=-1 and the magnitude of the calculated EˉSIE\bar{E}_{\rm{SIE}} lies in between the two recent measurements of the cosmological constant Λ\Lambda obtained by the Planck Mission and the Hubble Space Telescope.

Keywords

Cite

@article{arxiv.2301.10151,
  title  = {Casimir Self-Interaction Energy Density of Quantum Electrodynamic Fields},
  author = {Alexandre Tkatchenko and Dmitry V. Fedorov},
  journal= {arXiv preprint arXiv:2301.10151},
  year   = {2023}
}

Comments

6 pages

R2 v1 2026-06-28T08:18:51.997Z