Emergence of Physical Law From a Pre-Geometry Universe: A Computational Demonstration

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1. Verfasser: Slawson, Drew
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Sprache:Englisch
Veröffentlicht: Zenodo 2025
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author Slawson, Drew
author_facet Slawson, Drew
contents <p><strong>This paper presents one of the first high-resolution computational demonstrations showing how stable physical law can emerge spontaneously from a universe with no geometry, no forces, no dimensions, and no constants. Using a full-physics forward integration from an undefined informational substrate, the simulation reveals a striking result: a universal 55-node attractor structure that repeatedly forms as the system stabilizes.</strong></p> <p><strong>The findings challenge the long-held assumption that laws such as gravity, electromagnetism, or the speed of light are fundamental. Instead, the results suggest they are <em>endpoints</em> of much deeper organizational dynamics — patterns crystallizing out of an initially lawless pre-geometry state.</strong></p> <p><strong>This work represents a foundational step toward understanding how the universe transitions from raw information to ordered physics, symmetry groups, and dimensional structure.</strong></p>
format Recurso digital
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language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Emergence of Physical Law From a Pre-Geometry Universe: A Computational Demonstration
Slawson, Drew
Emergent physical law Pre-geometry universe Origin of physics Informational substrate Universal attractor Dimensional emergence Symmetry breaking Constants of nature Fundamental physics simulation Computational cosmology Early universe modeling Force-carrier emergence Structure formation High-resolution physics simulation
<p><strong>This paper presents one of the first high-resolution computational demonstrations showing how stable physical law can emerge spontaneously from a universe with no geometry, no forces, no dimensions, and no constants. Using a full-physics forward integration from an undefined informational substrate, the simulation reveals a striking result: a universal 55-node attractor structure that repeatedly forms as the system stabilizes.</strong></p> <p><strong>The findings challenge the long-held assumption that laws such as gravity, electromagnetism, or the speed of light are fundamental. Instead, the results suggest they are <em>endpoints</em> of much deeper organizational dynamics — patterns crystallizing out of an initially lawless pre-geometry state.</strong></p> <p><strong>This work represents a foundational step toward understanding how the universe transitions from raw information to ordered physics, symmetry groups, and dimensional structure.</strong></p>
title Emergence of Physical Law From a Pre-Geometry Universe: A Computational Demonstration
topic Emergent physical law Pre-geometry universe Origin of physics Informational substrate Universal attractor Dimensional emergence Symmetry breaking Constants of nature Fundamental physics simulation Computational cosmology Early universe modeling Force-carrier emergence Structure formation High-resolution physics simulation
url https://doi.org/10.5281/zenodo.17813238