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  4. Heuristic Estimation of the Vacuum Energy Density of the Universe: Part I—Analysis Based on Time Domain Electromagnetic Radiation
 
research article

Heuristic Estimation of the Vacuum Energy Density of the Universe: Part I—Analysis Based on Time Domain Electromagnetic Radiation

Cooray, Vernon
•
Cooray, Gerald
•
Rubinstein, Marcos
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2023
Journal of Electromagnetic Analysis and Applications

In this paper, an inequality satisfied by the vacuum energy density of the universe is derived using an indirect and heuristic procedure. The derivation is based on a proposed thought experiment, according to which an electron is accelerated to a constant and relativistic speed at a distance L from a perfectly conducting plane. The charge of the electron is represented by a spherical charge distribution located within the Compton wavelength of the electron. Subsequently, the electron is incident on the perfect conductor giving rise to transition radiation. The energy associated with the transition radiation depends on the parameter L. It is shown that an inequality satisfied by the vacuum energy density will emerge when the length L is pushed to cosmological dimensions and the product of the radiated energy and the time duration of emission are constrained by Heisenberg’s uncertainty principle. The inequality derived is given by ρΛ ≤ 9.9×10-9J/m3 where ρΛ is the vacuum energy density. This result is consistent with the measured value of the vacuum energy density, which is 0.538 × 10-9J/m. Since there is a direct relationship between the vacuum energy density and the Einstein’s cosmological constant, the inequality can be converted directly to that of the cosmological constant.

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Type
research article
DOI
10.4236/jemaa.2023.156006
Author(s)
Cooray, Vernon
Cooray, Gerald
Rubinstein, Marcos
Rachidi-Haeri, Farhad  
Date Issued

2023

Published in
Journal of Electromagnetic Analysis and Applications
Volume

15

Issue

06

Start page

73

End page

81

Subjects

Classical Electrodynamics

•

Electromagnetic Radiation

•

Action

•

Radiated Energy

•

Photon

•

Heisenberg’s Uncertainty Principle

•

Dark Energy

•

Vacuum Energy

•

Cosmological Constant

•

Hubble Radius

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
SCI-STI-FR  
Available on Infoscience
October 19, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/201639
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