Space–Field–Gravity (PPG). III: Connectivity Asymmetry, Scrambling Bounds, and Cyclic Cosmological States

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Main Author: Husiev, Igor
Format: Recurso digital
Published: Zenodo 2026
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author Husiev, Igor
author_facet Husiev, Igor
contents <p class="MsoNormal">Abstract<br>This paper develops a phenomenological interpretation of the Space–Field–Gravity (PPG)<br>framework by connecting the connectivity scalar δ(z) and the effective gravitational coupling<br>Geff(z) introduced in Papers I and II with coarse-grained correlation asymmetry and<br>scrambling-like dynamical bounds.<br>Two distinct dynamical regimes are considered: a near-homogeneous metastable regime<br>associated with suppressed connectivity evolution near the post-Bounce phase, and a post-<br>Bounce cascade regime initiated by residual correlation fluctuations.<br>Connections to quantum scrambling theory are introduced only at the level of phenomenological<br>analogy. The present framework does not yet possess a Hamiltonian formulation,<br>microscopic quantum dynamics, or a complete perturbative cosmological sector.<br>The present work should therefore be regarded as exploratory and phenomenological<br>rather than a complete microscopic theory of quantum gravity or cosmological information<br>dynamics.</p> <p class="MsoNormal"> </p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_20186002
institution Zenodo
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publishDate 2026
publisher Zenodo
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spellingShingle Space–Field–Gravity (PPG). III: Connectivity Asymmetry, Scrambling Bounds, and Cyclic Cosmological States
Husiev, Igor
Information Physics
Guse-Guseva Principle
Big Bounce Theory
PPG-Field
Calculus of Doubt
Quantum Ontology
<p class="MsoNormal">Abstract<br>This paper develops a phenomenological interpretation of the Space–Field–Gravity (PPG)<br>framework by connecting the connectivity scalar δ(z) and the effective gravitational coupling<br>Geff(z) introduced in Papers I and II with coarse-grained correlation asymmetry and<br>scrambling-like dynamical bounds.<br>Two distinct dynamical regimes are considered: a near-homogeneous metastable regime<br>associated with suppressed connectivity evolution near the post-Bounce phase, and a post-<br>Bounce cascade regime initiated by residual correlation fluctuations.<br>Connections to quantum scrambling theory are introduced only at the level of phenomenological<br>analogy. The present framework does not yet possess a Hamiltonian formulation,<br>microscopic quantum dynamics, or a complete perturbative cosmological sector.<br>The present work should therefore be regarded as exploratory and phenomenological<br>rather than a complete microscopic theory of quantum gravity or cosmological information<br>dynamics.</p> <p class="MsoNormal"> </p>
title Space–Field–Gravity (PPG). III: Connectivity Asymmetry, Scrambling Bounds, and Cyclic Cosmological States
topic Information Physics
Guse-Guseva Principle
Big Bounce Theory
PPG-Field
Calculus of Doubt
Quantum Ontology
url https://doi.org/10.5281/zenodo.20186002