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ARTICLE TYPE : RESEARCH ARTICLE

Published on :   05 Aug 2026, Volume - 2
Journal Title :   WebLog Journal of Applied Physics | WebLog J Appl Phys | WJAP
Source URL:   weblog icon https://weblogoa.com/articles/wjap.2026.h0503
Permanent Identifier (DOI) :   doi icon https://doi.org/10.5281/zenodo.21846151

Exotic Nonthermal Radiation, Etheric Tension and Reciprocal Galactic Regeneration: A Theory-Building Cosmological Framework for Dark Matter Halo Formation Through Black Hole Metaparticle Emissions

Alan Peter Garfoot 1 *
1Director of Research, Advanced Research Division, TNWTD, Scunthorpe, North Lincolnshire, United Kingdom

Abstract

Modern cosmology possesses extraordinary predictive power while simultaneously lacking explanatory closure concerning the deeper ontological origins of dark matter, dark energy, and the informational properties of black holes. Einstein's general theory of relativity successfully describes gravitational curvature, Hubble's observations established the expanding Universe, and Hawking demonstrated that black holes radiate thermally through quantum processes near event horizons. Nevertheless, the prevailing ΛCDM paradigm remains primarily descriptive regarding the physical nature of its dominant constituents, while thermal black hole models provide limited explanatory capacity concerning coherent, information-rich nonthermal emissions. Significant conceptual gaps persist concerning the relationship between black holes, dark matter halos, and the continuing emergence of cosmic structure.

This paper advances a theory-building cosmological framework synthesising Garfoot's theories of axionic dark radiation, Aspecton metaparticle dynamics, and the Gravitonic Dark Energy Ether hypothesis. Black holes function as resonance chambers generating coherent photon-hadronic metaparticles through harmonic embedding under extreme spacetime compression. As these metaparticles propagate into dark-energy-dominated environments, etheric tension destabilises resonance synchrony, depositing quark-derived dark matter in circumgalactic and intergalactic regions. These deposits build extensive dark matter halos and facilitate secondary galactic formation via interactions with wandering black holes. This regenerative paradigm preserves empirical achievements of contemporary cosmology while extending them toward a unified model of black hole physics, dark matter evolution, and cosmic self-organisation, establishing black holes as active drivers in the cosmological origin and regeneration of galaxies.

Citation

Alan Peter Garfoot. Exotic Nonthermal Radiation, Etheric Tension and Reciprocal Galactic Regeneration: A Theory-Building Cosmological Framework for Dark Matter Halo Formation Through Black Hole Metaparticle Emissions. WebLog J Appl Phys. wjap.2026.h0503. https://doi.org/10.5281/zenodo.21846151