Recursive Sphere Stabilization and Dimensional Shell Formation: An 11D Chronos Stability Framework

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1. Verfasser: Hall, Matthew
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Sprache:Englisch
Veröffentlicht: Zenodo 2026
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_version_ 1866901891326148608
author Hall, Matthew
author_facet Hall, Matthew
contents <p>This paper presents a recursive dimensional stability framework within the Chronos model in which dimensions emerge through stabilized recursive motion rather than through static spatial coordinates alone. Beginning from a dimensionless equilibrium point, the framework develops a hierarchical geometric progression involving spiral trajectories, cone expansion, toroidal circulation, spherical closure, linked sphere chains, compression-expansion dynamics, higher-order toroidal manifolds, stable radius distribution fields, and a final 11D recursive stability envelope.</p> <p>The framework proposes that dimensionality is fundamentally operational and coherence-based, arising through bounded recursive stabilization across scales. Stability is governed through the Chronos balance condition:</p> <p><span class="katex-display"><span class="katex"><span class="katex-mathml">χeff=CK→χ</span></span></span></p> <p>where stable systems exist only between collapse and blow-up regimes.</p> <p>The paper further explores the interpretation of gravity as an emergent effect of recursive time-field circulation and curvature redistribution, suggesting that movement through space may fundamentally correspond to movement through recursive stability pathways within the time field itself. The framework also introduces a relational interpretation of dimensional structure, where recursive pathways govern connectivity, synchronization, influence propagation, and multiscale coherence across linked systems.</p> <p>Through analytical geometry, recursive shell formation, toroidal closure dynamics, and bounded stability fields, the work proposes a generalized recursive dimensional architecture intended to model how dimensional systems connect, evolve, stabilize, and propagate coherence through time.</p>
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language eng
publishDate 2026
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spellingShingle Recursive Sphere Stabilization and Dimensional Shell Formation: An 11D Chronos Stability Framework
Hall, Matthew
Chronos Theory
Recursive Dimensional Geometry
Time Field
Recursive Stability
11D Stability Envelope
Toroidal Geometry
Sphere Chain Dynamics
Recursive Motion
Dimensional Hierarchy
Multiscale Coherence
Recursive Shell Formation
Higher-Dimensional Geometry
Time-Field Dynamics
Stability-Regulated Systems
Bounded Coherence
Recursive Circulation
Compression-Expansion Dynamics
Linked Sphere Systems
Emergent Gravity
Recursive Cosmology
Geometric Stability
Recursive Connectivity
Figure-8 Topology
Möbius Geometry
Recursive Waveform Manifolds
Dimensional Stabilization
Coherence Fields
Stability Windows
Recursive Shell Ecosystems
Multiversal Geometry
<p>This paper presents a recursive dimensional stability framework within the Chronos model in which dimensions emerge through stabilized recursive motion rather than through static spatial coordinates alone. Beginning from a dimensionless equilibrium point, the framework develops a hierarchical geometric progression involving spiral trajectories, cone expansion, toroidal circulation, spherical closure, linked sphere chains, compression-expansion dynamics, higher-order toroidal manifolds, stable radius distribution fields, and a final 11D recursive stability envelope.</p> <p>The framework proposes that dimensionality is fundamentally operational and coherence-based, arising through bounded recursive stabilization across scales. Stability is governed through the Chronos balance condition:</p> <p><span class="katex-display"><span class="katex"><span class="katex-mathml">χeff=CK→χ</span></span></span></p> <p>where stable systems exist only between collapse and blow-up regimes.</p> <p>The paper further explores the interpretation of gravity as an emergent effect of recursive time-field circulation and curvature redistribution, suggesting that movement through space may fundamentally correspond to movement through recursive stability pathways within the time field itself. The framework also introduces a relational interpretation of dimensional structure, where recursive pathways govern connectivity, synchronization, influence propagation, and multiscale coherence across linked systems.</p> <p>Through analytical geometry, recursive shell formation, toroidal closure dynamics, and bounded stability fields, the work proposes a generalized recursive dimensional architecture intended to model how dimensional systems connect, evolve, stabilize, and propagate coherence through time.</p>
title Recursive Sphere Stabilization and Dimensional Shell Formation: An 11D Chronos Stability Framework
topic Chronos Theory
Recursive Dimensional Geometry
Time Field
Recursive Stability
11D Stability Envelope
Toroidal Geometry
Sphere Chain Dynamics
Recursive Motion
Dimensional Hierarchy
Multiscale Coherence
Recursive Shell Formation
Higher-Dimensional Geometry
Time-Field Dynamics
Stability-Regulated Systems
Bounded Coherence
Recursive Circulation
Compression-Expansion Dynamics
Linked Sphere Systems
Emergent Gravity
Recursive Cosmology
Geometric Stability
Recursive Connectivity
Figure-8 Topology
Möbius Geometry
Recursive Waveform Manifolds
Dimensional Stabilization
Coherence Fields
Stability Windows
Recursive Shell Ecosystems
Multiversal Geometry
url https://doi.org/10.5281/zenodo.20261488