Photon-Sea v1.5 Phenomenology and Falsifiable Predictions of the MyominAung Photon-Sea Theory

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1. Verfasser: Aung, Myomin
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2026
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author Aung, Myomin
author_facet Aung, Myomin
contents <p>This work explores the phenomenological consequences and falsifiable predictions of the MyominAung Photon-Sea Theory (MATE), a nonlinear field framework characterized by an inverse mass–frequency relation. The theory predicts observable deviations from standard models across multiple experimental and observational domains, including atomic clock precision measurements, weak-field gravity tests, gravitational wave ringdown spectra, and late-time cosmology. In particular, low-frequency saturation effects give rise to emergent gravitational behavior, smooth dark-matter–like dynamics, and cosmic acceleration without invoking new particles or a cosmological constant. Clear falsification criteria are identified, establishing concrete pathways through which current and next-generation experiments can test or rule out the framework. These results position MATE as a minimal and empirically accessible alternative approach to unification and cosmological phenomenology.</p>
format Recurso digital
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spellingShingle Photon-Sea v1.5 Phenomenology and Falsifiable Predictions of the MyominAung Photon-Sea Theory
Aung, Myomin
Photon-Sea Theory
Phenomenology
Falsifiable Predictions
Atomic Clock Tests
Precision Gravity
Gravitational Waves
Emergent Dark Matter
Alternative Cosmology
Inverse Mass–Frequency Relation
Unified Field Models
<p>This work explores the phenomenological consequences and falsifiable predictions of the MyominAung Photon-Sea Theory (MATE), a nonlinear field framework characterized by an inverse mass–frequency relation. The theory predicts observable deviations from standard models across multiple experimental and observational domains, including atomic clock precision measurements, weak-field gravity tests, gravitational wave ringdown spectra, and late-time cosmology. In particular, low-frequency saturation effects give rise to emergent gravitational behavior, smooth dark-matter–like dynamics, and cosmic acceleration without invoking new particles or a cosmological constant. Clear falsification criteria are identified, establishing concrete pathways through which current and next-generation experiments can test or rule out the framework. These results position MATE as a minimal and empirically accessible alternative approach to unification and cosmological phenomenology.</p>
title Photon-Sea v1.5 Phenomenology and Falsifiable Predictions of the MyominAung Photon-Sea Theory
topic Photon-Sea Theory
Phenomenology
Falsifiable Predictions
Atomic Clock Tests
Precision Gravity
Gravitational Waves
Emergent Dark Matter
Alternative Cosmology
Inverse Mass–Frequency Relation
Unified Field Models
url https://doi.org/10.5281/zenodo.18477475