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, , in terms of the fine-structure constant. The proposed model obeys the cosmological equation of state and the magnitude of the calculated lies in between the two recent measurements of the cosmological constant obtained by the Planck Mission and the Hubble Space Telescope.
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