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Non-Hertzian Waves May Involve Subquantum Particles: Difference between revisions

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{{Infobox paper
{{Infobox paper
| title = Non-Hertzian Waves May Involve Subquantum Particles
| title = Non-Hertzian Waves May Involve Subquantum Particles
| url = [https://web.archive.org/web/20231004072555/http://www.rialian.com/rnboyd/nonhertzian.htm Link to paper (Internet Archive)]
| author = [[Rochus Boerner]]
| author = [[Rochus Boerner]]
| keywords = [[ether]], [[waves]], [[light]]
| keywords = [[ether]], [[waves]], [[light]]
| published = 1995
| published = 1995
}}
}}
'''Read the full paper''' [https://web.archive.org/web/20231004072555/http://www.rialian.com/rnboyd/nonhertzian.htm here] ''(archived copy — the original link is no longer available)''


==Abstract==
==Abstract==

Revision as of 09:19, 20 July 2026

Scientific Paper
TitleNon-Hertzian Waves May Involve Subquantum Particles
Read in fullLink to paper (Internet Archive)
Author(s)Rochus Boerner
Keywordsether, waves, light
Published1995

Read the full paper here (archived copy — the original link is no longer available)

Abstract

The idea of "non-Hertzian" EM energy goes back to the 19th century. I'll try to give a short summary.

At the end of the 19th century, physicists believed that light was a mechanical oscillation in a mechanical medium, the aether. But such a medium could in principle sustain two kinds of waves: transversal and longitudinal. Those readers who are unfamiliar with physics should think of water for illustration: transversal waves are the surface waves which wave in a fashion perpendicular to their axis of propagation, while longitudinal waves are the sounds waves or pressure waves that propagate underneath the surface. The latter oscillate in the direction of propagation.

Transversal waves generally move at a different speed than longitudinal waves.