A Nash Point Origin for the Early Universe: Curvature Overshoot, Oscillatory Convergence, and the Emergence of Invariants

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Main Author: Grobler, Marius
Format: Recurso digital
Published: Zenodo 2026
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author Grobler, Marius
author_facet Grobler, Marius
contents <p>This work proposes a geometric origin for the universe based on the Primordial Curvature Overshoot Postulate. Instead of beginning at \kappa =0 or in a finely tuned symmetric state, the universe is framed as emerging from a Nash‑type point where multiple curvature modes were equally viable. Its first transformation overshot toward high curvature, recoiled toward lower curvature, and entered a sequence of diminishing oscillations that converged onto the narrow corridor of self‑sustaining geometry observed today. Because invariants, conservation laws, and persistent modes had not yet formed during this primordial phase, no information from that era could be encoded or preserved. The early universe was therefore thermally extreme but informationally barren, with physics emerging only after geometric stabilization. Observable features such as near‑flatness, slight positive expansion, the stability of matter, and the separation of forces are interpreted as fossilized consequences of this convergence process. The model replaces fine‑tuned initial conditions with a structural principle and offers a coherent, minimal framework for understanding how the universe learned its own geometry.</p>
format Recurso digital
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institution Zenodo
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publishDate 2026
publisher Zenodo
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spellingShingle A Nash Point Origin for the Early Universe: Curvature Overshoot, Oscillatory Convergence, and the Emergence of Invariants
Grobler, Marius
Curvature recoil
- Self‑correcting geometry
- Fine‑tuning problem
Curvature dynamics
- Oscillatory convergence
- Emergence of invariants
Primordial Curvature Overshoot
Nash‑point origin
Pre‑invariant cosmology
Geometric cosmology
- Early universe geometry
<p>This work proposes a geometric origin for the universe based on the Primordial Curvature Overshoot Postulate. Instead of beginning at \kappa =0 or in a finely tuned symmetric state, the universe is framed as emerging from a Nash‑type point where multiple curvature modes were equally viable. Its first transformation overshot toward high curvature, recoiled toward lower curvature, and entered a sequence of diminishing oscillations that converged onto the narrow corridor of self‑sustaining geometry observed today. Because invariants, conservation laws, and persistent modes had not yet formed during this primordial phase, no information from that era could be encoded or preserved. The early universe was therefore thermally extreme but informationally barren, with physics emerging only after geometric stabilization. Observable features such as near‑flatness, slight positive expansion, the stability of matter, and the separation of forces are interpreted as fossilized consequences of this convergence process. The model replaces fine‑tuned initial conditions with a structural principle and offers a coherent, minimal framework for understanding how the universe learned its own geometry.</p>
title A Nash Point Origin for the Early Universe: Curvature Overshoot, Oscillatory Convergence, and the Emergence of Invariants
topic Curvature recoil
- Self‑correcting geometry
- Fine‑tuning problem
Curvature dynamics
- Oscillatory convergence
- Emergence of invariants
Primordial Curvature Overshoot
Nash‑point origin
Pre‑invariant cosmology
Geometric cosmology
- Early universe geometry
url https://doi.org/10.5281/zenodo.18482187