Dark Matter as Accumulated Informational History: A Testable Prediction for JWST

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Auteur principal: Viglione, Damiano
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2026
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author Viglione, Damiano
author_facet Viglione, Damiano
contents <p>Abstract</p> <p>This collection outlines the Informational Manifold Framework (IMF), a theoretical proposal suggesting that physical reality is an emergent, holographic projection of an underlying informational manifold.  </p> <p>A central hypothesis of this framework reinterprets dark matter not as a novel, collisionless particle, but as the accumulated gravitational effect of a region's quantum interaction history. This model provides a potential mechanism for the anomalous, massive "Red Monster" galaxies observed by JWST at high redshifts (z > 7), suggesting these galaxies were "born heavy" due to intense early star formation and high decoherence rates.  </p> <p>Included Documents:</p> <p>A Testable Prediction for JWST: Outlines a specific, falsifiable observational test comparing the dark matter fractions of active versus quiescent high-redshift galaxies using public JWST data.  </p> <p>The Informational Manifold Framework (Core Proposal): Details the theoretical architecture, including wave-function collapse as computational optimization and toroidal cosmic geometry.  </p> <p>Mathematical Expressions Glossary: A supplementary compilation of the proposed mathematical relationships and their connections to established physics. </p> <p> </p> <p>Author's Note: Alongside the core proposal and predictions, I have also included several supplementary "speculation" papers in this collection. I want to be transparent that I am not a formal mathematician, nor do I claim to have definitive answers or completed mathematical derivations for these concepts. My primary goal in publishing this framework is simply to spark curiosity, invite rigorous critique, and foster open, constructive discussion within the scientific community.</p>
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language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Dark Matter as Accumulated Informational History: A Testable Prediction for JWST
Viglione, Damiano
Dark matter
JWST
Holographic Principle
Information Theory
Astrophysics
<p>Abstract</p> <p>This collection outlines the Informational Manifold Framework (IMF), a theoretical proposal suggesting that physical reality is an emergent, holographic projection of an underlying informational manifold.  </p> <p>A central hypothesis of this framework reinterprets dark matter not as a novel, collisionless particle, but as the accumulated gravitational effect of a region's quantum interaction history. This model provides a potential mechanism for the anomalous, massive "Red Monster" galaxies observed by JWST at high redshifts (z > 7), suggesting these galaxies were "born heavy" due to intense early star formation and high decoherence rates.  </p> <p>Included Documents:</p> <p>A Testable Prediction for JWST: Outlines a specific, falsifiable observational test comparing the dark matter fractions of active versus quiescent high-redshift galaxies using public JWST data.  </p> <p>The Informational Manifold Framework (Core Proposal): Details the theoretical architecture, including wave-function collapse as computational optimization and toroidal cosmic geometry.  </p> <p>Mathematical Expressions Glossary: A supplementary compilation of the proposed mathematical relationships and their connections to established physics. </p> <p> </p> <p>Author's Note: Alongside the core proposal and predictions, I have also included several supplementary "speculation" papers in this collection. I want to be transparent that I am not a formal mathematician, nor do I claim to have definitive answers or completed mathematical derivations for these concepts. My primary goal in publishing this framework is simply to spark curiosity, invite rigorous critique, and foster open, constructive discussion within the scientific community.</p>
title Dark Matter as Accumulated Informational History: A Testable Prediction for JWST
topic Dark matter
JWST
Holographic Principle
Information Theory
Astrophysics
url https://doi.org/10.5281/zenodo.19444105