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ISSN: 1915-8408


Sonic ambipolons emitted from free electrons at high voltage
as sound frequency carriers for coherent 'acoustic lasers'

by Paulo N. Correa, Alexandra N. Correa
Aurora Biophysics Research Institute

J Aetherom Res, Volume 4, Issue 13 (July 2026),  pp. 1-26

Article ID:   JAR04-13-01

Price:   US $40


The Journal of Aetherometric Research is an open-review journal. If you wish to contribute a review of this article, please send your review to editor.JAR@aetherometry.com .


ABSTRACT

The effects of a molecular medium upon the velocity of sound are shown to be distinct from those affecting the production and transmission of sound frequencies. Sound frequency is shown analytically to be a property of electron-emitted power ambipolons that are by nature sonic, and depends on the differential between the electric (or magnetic) frequencies of ambipolons and electrons for the same voltage potential. The differential, and thus the sound frequency, is observed to increase in parallel with the increasing voltage of the emitted ambipolons. While there is a limit to the potential of the kinetic energy that can be associated with any electron, there is no limit to the potentials of emitted ambipolons. One particular differential (the electron free swing frequency fGe) serves as a physical tuner of octaves. A speculation is offered regarding the possibility of a second physical tuner having an interval towards the former of

6.1263 sec-1 ≈ (π2/φ) sec-1 = 6.0997 sec-1 = fGe/69.995
Phonons are shown to be theoretical constructs devoid of particle nature. In an electron plasma, their amended energy function can be shown to reduce to that of the kinetons responsible for the translation of modal free electrons of state. Shockwaves arise in an electron gas when electrons travel through the plasma at velocities greater than those of the translation of the modal electrons of state. The possibility of coherent sonic beams ("acoustic lasers") is explored in light of these aetherometric findings.