Reality as Resonance: Reconstructing the Cosmos from Field Dynamics

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Main Author: Neo Gomez
Format: Recurso digital
Published: Zenodo 2025
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author Neo Gomez
author_facet Neo Gomez
contents <p>This deposit includes the paper <strong>“Where Models Meet: Uncovering the Inversion Point,”</strong> which introduces a framework for understanding how established cosmological models can be “right for the wrong reason.” It outlines the <strong>Inversion Point Principle</strong>, explaining why standard theories like <span><span>Λ\Lambda</span><span><span><span>Λ</span></span></span></span>CDM and General Relativity succeed in prediction yet rely on placeholders such as dark matter and dark energy. The paper proposes an <strong>emergent-field logic</strong>—inspired by the works of Emmy Noether, Karen Barad, Karl Friston, Mary Cartwright, Olga Taussky-Todd, and Karen Uhlenbeck—that reproduces lensing phenomena without invoking hidden mass. By showing how coherence dynamics underlie observed effects, it aims to refine (rather than replace) current models, underscoring deeper structural symmetries and phase relationships.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15110423
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Reality as Resonance: Reconstructing the Cosmos from Field Dynamics
Neo Gomez
<p>This deposit includes the paper <strong>“Where Models Meet: Uncovering the Inversion Point,”</strong> which introduces a framework for understanding how established cosmological models can be “right for the wrong reason.” It outlines the <strong>Inversion Point Principle</strong>, explaining why standard theories like <span><span>Λ\Lambda</span><span><span><span>Λ</span></span></span></span>CDM and General Relativity succeed in prediction yet rely on placeholders such as dark matter and dark energy. The paper proposes an <strong>emergent-field logic</strong>—inspired by the works of Emmy Noether, Karen Barad, Karl Friston, Mary Cartwright, Olga Taussky-Todd, and Karen Uhlenbeck—that reproduces lensing phenomena without invoking hidden mass. By showing how coherence dynamics underlie observed effects, it aims to refine (rather than replace) current models, underscoring deeper structural symmetries and phase relationships.</p>
title Reality as Resonance: Reconstructing the Cosmos from Field Dynamics
url https://doi.org/10.5281/zenodo.15110423