Where the map runs out

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1. Verfasser: Stinton-duGard, James
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2026
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author Stinton-duGard, James
author_facet Stinton-duGard, James
contents <p>This boundary document outlines a structural framework proposing that spacetime (<span class="math-inline">$\mathcal{M}^4$</span>) and dynamic physical phenomena are emergent, explicate projections of a static, 4-dimensional spatial tensor lattice (<span class="math-inline">$T^{(4)}$</span>). Rather than dynamically unifying quantum mechanics and General Relativity, this hypothesis treats both as lower-dimensional rendering artefacts of an <span class="math-inline">$n$</span>-dimensional sequential observer operator (<span class="math-inline">$\hat{\mathcal{C}}$</span>). The primary utility of this model is its purely geometric approach to the baryon asymmetry problem. We propose that particle identity and Charge/Parity (CP) violations are not intrinsic properties of dynamic fields, but native geometric orientations within a non-orientable bulk 4-manifold. Matter and antimatter are defined strictly as identical topological paths traversed in opposite orientations. This document formalises the axioms, isolates the established differential geometry, and defines the exact mathematical deficits required to render the hypothesis falsifiable—specifically, the challenge of deriving the observed matter-antimatter asymmetry (<span class="math-inline">$\eta \approx 6 \times 10^{-10}$</span>) exclusively from the baseline curvature of a non-orientable <span class="math-inline">$T^{(4)}$</span> topology.</p> <p><em>Note: This is a working paper and structural boundary document, not a completed physical derivation. It maps the strict geometric parameters required, establishing a collaborative framework for differential geometers to execute the formal proofs.</em></p> <p><em> The technical companion document — "The Static Lattice Hypothesis: A Topological Model for Baryogenesis and Emergent Spacetime" — is available at doi.org/10.5281/zenodo.20358712</em></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_20358426
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Where the map runs out
Stinton-duGard, James
Theoretical physics
Differential Geometry
Baryogenesis
CP Violation
Matter-Antimatter Asymmetry
Emergent Spacetime
Non-orientable 4-Manifolds
Holographic Principle
Quantum Measurement Problem
Arrow of Time
Topology
<p>This boundary document outlines a structural framework proposing that spacetime (<span class="math-inline">$\mathcal{M}^4$</span>) and dynamic physical phenomena are emergent, explicate projections of a static, 4-dimensional spatial tensor lattice (<span class="math-inline">$T^{(4)}$</span>). Rather than dynamically unifying quantum mechanics and General Relativity, this hypothesis treats both as lower-dimensional rendering artefacts of an <span class="math-inline">$n$</span>-dimensional sequential observer operator (<span class="math-inline">$\hat{\mathcal{C}}$</span>). The primary utility of this model is its purely geometric approach to the baryon asymmetry problem. We propose that particle identity and Charge/Parity (CP) violations are not intrinsic properties of dynamic fields, but native geometric orientations within a non-orientable bulk 4-manifold. Matter and antimatter are defined strictly as identical topological paths traversed in opposite orientations. This document formalises the axioms, isolates the established differential geometry, and defines the exact mathematical deficits required to render the hypothesis falsifiable—specifically, the challenge of deriving the observed matter-antimatter asymmetry (<span class="math-inline">$\eta \approx 6 \times 10^{-10}$</span>) exclusively from the baseline curvature of a non-orientable <span class="math-inline">$T^{(4)}$</span> topology.</p> <p><em>Note: This is a working paper and structural boundary document, not a completed physical derivation. It maps the strict geometric parameters required, establishing a collaborative framework for differential geometers to execute the formal proofs.</em></p> <p><em> The technical companion document — "The Static Lattice Hypothesis: A Topological Model for Baryogenesis and Emergent Spacetime" — is available at doi.org/10.5281/zenodo.20358712</em></p>
title Where the map runs out
topic Theoretical physics
Differential Geometry
Baryogenesis
CP Violation
Matter-Antimatter Asymmetry
Emergent Spacetime
Non-orientable 4-Manifolds
Holographic Principle
Quantum Measurement Problem
Arrow of Time
Topology
url https://doi.org/10.5281/zenodo.20358426