Photon Emission as Substratum Casimir-Rayleigh Collapse: A Hydrodynamic Validation of Schwinger's Hypothesis

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Autore principale: Mchedlishvili, Vakhtang
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2026
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author Mchedlishvili, Vakhtang
author_facet Mchedlishvili, Vakhtang
contents <p>This paper proposes a novel hydrodynamic model of photon emission based on the principles of Substratum Hydrodynamics (SH) and a dynamic interpretation of the Casimir effect. We argue that photon emission is the result of a catastrophic collapse of a nanometric cavitation void within the cosmic Substratum. In this model, the Casimir force acts as a "positive feedback" mechanism, focusing the immense background pressure of the Substratum (10³² Pa) and driving the cavity walls to trans-luminal velocities (v > c). This work synthesizes the macro-phenomenon of sonoluminescence and atomic spectral transitions into a single mechanical framework, thereby providing a deterministic physical explanation for the "quantum leap." The derivation suggests that Planck's constant (h) represents a fundamental hydrodynamic action of the Substratum's cavitation collapse.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18348084
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
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spellingShingle Photon Emission as Substratum Casimir-Rayleigh Collapse: A Hydrodynamic Validation of Schwinger's Hypothesis
Mchedlishvili, Vakhtang
Substratum Hydrodynamics
Casimir Effect
Sonoluminescence
Quantum Transitions
Quantum Foundations
Cavitation
Vacuum Energy
Julian Schwinger
Photon Emission
<p>This paper proposes a novel hydrodynamic model of photon emission based on the principles of Substratum Hydrodynamics (SH) and a dynamic interpretation of the Casimir effect. We argue that photon emission is the result of a catastrophic collapse of a nanometric cavitation void within the cosmic Substratum. In this model, the Casimir force acts as a "positive feedback" mechanism, focusing the immense background pressure of the Substratum (10³² Pa) and driving the cavity walls to trans-luminal velocities (v > c). This work synthesizes the macro-phenomenon of sonoluminescence and atomic spectral transitions into a single mechanical framework, thereby providing a deterministic physical explanation for the "quantum leap." The derivation suggests that Planck's constant (h) represents a fundamental hydrodynamic action of the Substratum's cavitation collapse.</p>
title Photon Emission as Substratum Casimir-Rayleigh Collapse: A Hydrodynamic Validation of Schwinger's Hypothesis
topic Substratum Hydrodynamics
Casimir Effect
Sonoluminescence
Quantum Transitions
Quantum Foundations
Cavitation
Vacuum Energy
Julian Schwinger
Photon Emission
url https://doi.org/10.5281/zenodo.18348084