Dark Matter as Gravitational Artefacts of 6D→3D Quasicrystal Projection in the Helix-Light-Vortex Framework

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Auteur principal: Krüger, Marcel
Format: Recurso digital
Publié: Zenodo 2025
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author Krüger, Marcel
author_facet Krüger, Marcel
contents <p>We propose a geometric origin of dark matter within the Helix-Light-Vortex (HLV) framework. A six-dimensional (6D) periodic lattice is projected into threedimensional (3D) spacetime via a quasicrystal cut-and-project method, producing a point set with residual nodes invisible to Standard Model interactions but gravitationally active. These artefacts generate dark matter halos and large-scale structure, with testable signatures in gravitational lensing, galaxy clustering, and the cosmic microwave background (CMB).</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17417131
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Dark Matter as Gravitational Artefacts of 6D→3D Quasicrystal Projection in the Helix-Light-Vortex Framework
Krüger, Marcel
<p>We propose a geometric origin of dark matter within the Helix-Light-Vortex (HLV) framework. A six-dimensional (6D) periodic lattice is projected into threedimensional (3D) spacetime via a quasicrystal cut-and-project method, producing a point set with residual nodes invisible to Standard Model interactions but gravitationally active. These artefacts generate dark matter halos and large-scale structure, with testable signatures in gravitational lensing, galaxy clustering, and the cosmic microwave background (CMB).</p>
title Dark Matter as Gravitational Artefacts of 6D→3D Quasicrystal Projection in the Helix-Light-Vortex Framework
url https://doi.org/10.5281/zenodo.17417131