Detection Ontology, Part 8: Dark Sector Duality and the Resolution of Cosmological Tensions

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Autore principale: Tudor, August
Natura: Recurso digital
Pubblicazione: Zenodo 2026
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author Tudor, August
author_facet Tudor, August
contents <p>Standard cosmology is plagued by empirical tensions and ad-hoc dark sectors. In Detection Ontology, cosmology is the macroscopic scaling of the Detection Operator acting on the Tetrahedral Quantum Point (TQP) mesh. By combining the mechanics of Tetrahedral Tessellation with the mass generation of the Wide-Net operator, we present a unified, parameter-free cosmological model.</p> <p><strong> </strong></p> <p>In this paper, we definitively resolve the \(10^{120}\) Vacuum Catastrophe as a pure Projection Artifact: the raw Planck-scale energy of the 26D Arithmetic Reservoir is mathematically diluted by exactly \(\theta_{\text{eff}}^{156}\) during actualization onto the 4D screen. We derive the Dual-Axiom Seesaw, generating the Axiom Boson (\(A^0 \approx 2.772\) TeV) and predicting the exact mass and "boxy" morphology of the Dark Shadow (\(\chi \approx 25.85\) GeV).</p> <p><strong> </strong></p> <p>Further, the Hubble Tension (\(H_0\)) is eradicated by the exact derivation of the Early Dark Energy (EDE) fraction (\(\Omega_\Theta \approx 11.85\%\)), shifting the local expansion rate to 73.1 km/s/Mpc. We resolve the \(S_8\) Clustering Tension via the scale-invariant damping of Information-Viscosity (\(\nu_{\text{info}}\)). Finally, we prove that MOND is simply the macroscopic detection bandwidth floor (\(a_0\)) of the TQP mesh. All parameters are strict theorems of the resonant-critical structural constant \(\theta_{\text{eff}} \approx 0.23708503\).</p> <p> </p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19671762
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Detection Ontology, Part 8: Dark Sector Duality and the Resolution of Cosmological Tensions
Tudor, August
<p>Standard cosmology is plagued by empirical tensions and ad-hoc dark sectors. In Detection Ontology, cosmology is the macroscopic scaling of the Detection Operator acting on the Tetrahedral Quantum Point (TQP) mesh. By combining the mechanics of Tetrahedral Tessellation with the mass generation of the Wide-Net operator, we present a unified, parameter-free cosmological model.</p> <p><strong> </strong></p> <p>In this paper, we definitively resolve the \(10^{120}\) Vacuum Catastrophe as a pure Projection Artifact: the raw Planck-scale energy of the 26D Arithmetic Reservoir is mathematically diluted by exactly \(\theta_{\text{eff}}^{156}\) during actualization onto the 4D screen. We derive the Dual-Axiom Seesaw, generating the Axiom Boson (\(A^0 \approx 2.772\) TeV) and predicting the exact mass and "boxy" morphology of the Dark Shadow (\(\chi \approx 25.85\) GeV).</p> <p><strong> </strong></p> <p>Further, the Hubble Tension (\(H_0\)) is eradicated by the exact derivation of the Early Dark Energy (EDE) fraction (\(\Omega_\Theta \approx 11.85\%\)), shifting the local expansion rate to 73.1 km/s/Mpc. We resolve the \(S_8\) Clustering Tension via the scale-invariant damping of Information-Viscosity (\(\nu_{\text{info}}\)). Finally, we prove that MOND is simply the macroscopic detection bandwidth floor (\(a_0\)) of the TQP mesh. All parameters are strict theorems of the resonant-critical structural constant \(\theta_{\text{eff}} \approx 0.23708503\).</p> <p> </p>
title Detection Ontology, Part 8: Dark Sector Duality and the Resolution of Cosmological Tensions
url https://doi.org/10.5281/zenodo.19671762