The Electron-Positron Sea: Difference between revisions
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The Electron-Positron Sea |
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{{Infobox paper | |||
| title = The Electron-Positron Sea | |||
| author = [[David Tombe]] | |||
| published = 2014 | |||
| url = https://www.gsjournal.net/Science-Journals/Research%20Papers-Quantum%20Theory%20/%20Particle%20Physics/Download/5507 | |||
}} | |||
==Abstract== | |||
It is proposed that all space is permeated with a dense electrically neutral sea of electrons and positrons which serves as the medium for the propagation of light. The challenge remains to devise a stable bonding mechanism within this luminiferous medium that conforms with Maxwell’s equations by providing the necessary solidity and the physical mechanism that will give rise to the characteristics of electromagnetic waves, while at the same time allowing for the fluidity that would avoid the problem of friction in the planetary orbits. | It is proposed that all space is permeated with a dense electrically neutral sea of electrons and positrons which serves as the medium for the propagation of light. The challenge remains to devise a stable bonding mechanism within this luminiferous medium that conforms with Maxwell’s equations by providing the necessary solidity and the physical mechanism that will give rise to the characteristics of electromagnetic waves, while at the same time allowing for the fluidity that would avoid the problem of friction in the planetary orbits. | ||
[[Category:Scientific Paper|electron-positron sea]] | |||
[[Category:Aether|electron-positron sea]] | |||
Latest revision as of 07:06, 22 July 2026
| Scientific Paper | |
|---|---|
| Title | The Electron-Positron Sea |
| Read in full | https://www.gsjournal.net/Science-Journals/Research%20Papers-Quantum%20Theory%20/%20Particle%20Physics/Download/5507 |
| Author(s) | David Tombe |
| Published | 2014 |
Abstract
It is proposed that all space is permeated with a dense electrically neutral sea of electrons and positrons which serves as the medium for the propagation of light. The challenge remains to devise a stable bonding mechanism within this luminiferous medium that conforms with Maxwell’s equations by providing the necessary solidity and the physical mechanism that will give rise to the characteristics of electromagnetic waves, while at the same time allowing for the fluidity that would avoid the problem of friction in the planetary orbits.