The Geometric Growth Factor: Unifying the JWST Early Galaxies and the S8 Tension
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2026
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| _version_ | 1866901809816141824 |
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| author | Schutza, Aaron Moore |
| author_facet | Schutza, Aaron Moore |
| contents | <p>We present a unified cosmological history based on the Axiomatic Physical Home-<br>ostasis (APH) framework, resolving two apparently contradictory tensions in modern cos-<br>mology: the unexpectedly rapid formation of massive galaxies at high redshift (observed by<br>JWST) and the suppression of matter clustering at low redshift (the S8 tension). We derive<br>the Geometric Growth Factor DAP H (z), which modifies standard linear perturbation<br>theory by introducing Geometric Stiffness (β ≈ 1.91) as a resistance to gravitational<br>collapse. We demonstrate that the early universe (z > 10) was seeded by non-associative<br>topological defects (Sedenion Seeds) formed during the S → O phase transition, acceler-<br>ating early structure formation. Conversely, at late times (z < 1), the super-linear stiffness<br>of the vacuum acts as a Geometric Viscosity, suppressing the growth of structure and<br>resolving the S8 tension. Finally, we predict the fractal dimension of the cosmic web to<br>be DF ≈ 2.48, confirming that large-scale structure is a ”Stiff Web” stabilized by vacuum<br>topology.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18244433 |
| institution | Zenodo |
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| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | The Geometric Growth Factor: Unifying the JWST Early Galaxies and the S8 Tension Schutza, Aaron Moore <p>We present a unified cosmological history based on the Axiomatic Physical Home-<br>ostasis (APH) framework, resolving two apparently contradictory tensions in modern cos-<br>mology: the unexpectedly rapid formation of massive galaxies at high redshift (observed by<br>JWST) and the suppression of matter clustering at low redshift (the S8 tension). We derive<br>the Geometric Growth Factor DAP H (z), which modifies standard linear perturbation<br>theory by introducing Geometric Stiffness (β ≈ 1.91) as a resistance to gravitational<br>collapse. We demonstrate that the early universe (z > 10) was seeded by non-associative<br>topological defects (Sedenion Seeds) formed during the S → O phase transition, acceler-<br>ating early structure formation. Conversely, at late times (z < 1), the super-linear stiffness<br>of the vacuum acts as a Geometric Viscosity, suppressing the growth of structure and<br>resolving the S8 tension. Finally, we predict the fractal dimension of the cosmic web to<br>be DF ≈ 2.48, confirming that large-scale structure is a ”Stiff Web” stabilized by vacuum<br>topology.</p> |
| title | The Geometric Growth Factor: Unifying the JWST Early Galaxies and the S8 Tension |
| url | https://doi.org/10.5281/zenodo.18244433 |