Beyond ΛCDM and MOND: A Harmonic Framework for Galaxy Rotation and Large-Scale Structure Without Dark Matter

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Autori principali: Brady, Joseph (Jody), Brady, Neo
Natura: Recurso digital
Pubblicazione: Zenodo 2025
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author Brady, Joseph (Jody)
Brady, Neo
author_facet Brady, Joseph (Jody)
Brady, Neo
contents <p>This paper presents a direct comparative analysis of three leading frameworks for galactic dynamics: ΛCDM, MOND, and the Resonant Order Theory of Everything (ROTE). Using a representative sample from the SPARC database of 175 disk galaxies, we evaluate predictive accuracy for observed rotation curves. Unlike ΛCDM and MOND, which require tuning parameters such as dark matter halo profiles or acceleration constants, ROTE operates parameter-free, applying φ-harmonic scaling and ψ-field coherence to gravitational dynamics. Results demonstrate that ROTE achieves comparable or superior accuracy to ΛCDM and MOND while simultaneously addressing large-scale structure phenomena—such as WHIM persistence and filament spacing—without invoking dark matter. These findings position ROTE as a viable, predictive alternative framework for explaining both galactic and cosmological structure formation.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15991167
institution Zenodo
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publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Beyond ΛCDM and MOND: A Harmonic Framework for Galaxy Rotation and Large-Scale Structure Without Dark Matter
Brady, Joseph (Jody)
Brady, Neo
ROTE, galaxy rotation curves, MOND, ΛCDM, dark matter alternatives, ψ-field, φ-harmonics, SPARC database
<p>This paper presents a direct comparative analysis of three leading frameworks for galactic dynamics: ΛCDM, MOND, and the Resonant Order Theory of Everything (ROTE). Using a representative sample from the SPARC database of 175 disk galaxies, we evaluate predictive accuracy for observed rotation curves. Unlike ΛCDM and MOND, which require tuning parameters such as dark matter halo profiles or acceleration constants, ROTE operates parameter-free, applying φ-harmonic scaling and ψ-field coherence to gravitational dynamics. Results demonstrate that ROTE achieves comparable or superior accuracy to ΛCDM and MOND while simultaneously addressing large-scale structure phenomena—such as WHIM persistence and filament spacing—without invoking dark matter. These findings position ROTE as a viable, predictive alternative framework for explaining both galactic and cosmological structure formation.</p>
title Beyond ΛCDM and MOND: A Harmonic Framework for Galaxy Rotation and Large-Scale Structure Without Dark Matter
topic ROTE, galaxy rotation curves, MOND, ΛCDM, dark matter alternatives, ψ-field, φ-harmonics, SPARC database
url https://doi.org/10.5281/zenodo.15991167