The Holographic Origins of MOND Acceleration Scale: A Non-Singular Framework for Galactic Dynamics and the Stasis Genesis limit

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Auteur principal: Pruyn, Shawn
Format: Recurso digital
Publié: Zenodo 2026
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author Pruyn, Shawn
author_facet Pruyn, Shawn
contents <p>We proposed at the MOND acceleration scale is a time evolving holographic resolution limit set by the cosmic horizon. This framework derives the 1/r Force la geometry via Guass's Law on 2D manifold and predicts that low acceleration dwarf galaxies at z >1.5 Will exhibit Newtonian falling rotation curves where static MOND predicts flatness, providing a falsifiable test for James Webb telescope.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_20159863
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle The Holographic Origins of MOND Acceleration Scale: A Non-Singular Framework for Galactic Dynamics and the Stasis Genesis limit
Pruyn, Shawn
mond
Holographic principle
Dark matter
Galactic rotation curves
Baryonyx Tully Fisher relation
Hubble constant
James Webb telescope
Dwarf galaxies
<p>We proposed at the MOND acceleration scale is a time evolving holographic resolution limit set by the cosmic horizon. This framework derives the 1/r Force la geometry via Guass's Law on 2D manifold and predicts that low acceleration dwarf galaxies at z >1.5 Will exhibit Newtonian falling rotation curves where static MOND predicts flatness, providing a falsifiable test for James Webb telescope.</p>
title The Holographic Origins of MOND Acceleration Scale: A Non-Singular Framework for Galactic Dynamics and the Stasis Genesis limit
topic mond
Holographic principle
Dark matter
Galactic rotation curves
Baryonyx Tully Fisher relation
Hubble constant
James Webb telescope
Dwarf galaxies
url https://doi.org/10.5281/zenodo.20159863