Galactic Rotation Curves_ Emergent Flatness

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Autore principale: Torlakovic, Enver
Natura: Recurso digital
Pubblicazione: Zenodo 2026
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_version_ 1866901155168124928
author Torlakovic, Enver
author_facet Torlakovic, Enver
contents <p><span>We present a revised model of galactic rotation curves based on the Vacuum Energy Quanta Field (VEQF) framework and its Gravity Emergence Model (GEM). Contrary to the standard ΛCDM paradigm, we propose that dark matter (DM) consists of inert, high-TCI solitons that coalesce early into a centralized toroidal structure, while baryonic matter distributes primarily in massive spiral arms and a thin disk. Using NGC 3198 as a test case, we demonstrate that this ontology yields an exceptional fit to observed rotation curves (RMSE = 4.46 km/s) with physically motivated parameters: 95% of DM concentrated in the central region, only 25% of baryonic matter in the bulge, and a remarkable 35% residing in spiral arms. This model resolves long-standing discrepancies in galactic dynamics and provides a natural explanation for the non-detection of dark matter in local disk environments.</span></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18160468
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Galactic Rotation Curves_ Emergent Flatness
Torlakovic, Enver
galactic rotation curves, dark matter, VEQF theory, soliton tori, spiral arms, emergent gravity
<p><span>We present a revised model of galactic rotation curves based on the Vacuum Energy Quanta Field (VEQF) framework and its Gravity Emergence Model (GEM). Contrary to the standard ΛCDM paradigm, we propose that dark matter (DM) consists of inert, high-TCI solitons that coalesce early into a centralized toroidal structure, while baryonic matter distributes primarily in massive spiral arms and a thin disk. Using NGC 3198 as a test case, we demonstrate that this ontology yields an exceptional fit to observed rotation curves (RMSE = 4.46 km/s) with physically motivated parameters: 95% of DM concentrated in the central region, only 25% of baryonic matter in the bulge, and a remarkable 35% residing in spiral arms. This model resolves long-standing discrepancies in galactic dynamics and provides a natural explanation for the non-detection of dark matter in local disk environments.</span></p>
title Galactic Rotation Curves_ Emergent Flatness
topic galactic rotation curves, dark matter, VEQF theory, soliton tori, spiral arms, emergent gravity
url https://doi.org/10.5281/zenodo.18160468