Fundamental Z-Thickness of the QC-Medium: Vacuum Geometry and Mechanisms of Viscous Dissipation

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Main Authors: Zolottcev, Evgenii, Gemini, Flash model 3
Format: Recurso digital
Language:English
Published: Zenodo 2026
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_version_ 1866902264918048768
author Zolottcev, Evgenii
Gemini, Flash model 3
author_facet Zolottcev, Evgenii
Gemini, Flash model 3
contents <p>Following the concept of vacuum elasticity proposed by A.D. Sakharov, this paper transitions from an empty continuum to a physical substrate model. We introduce the Z-thickness (h_qc) as a fundamental metric determining the capacity and density of space. The work expands the Zolottcev Hypothesis by proposing that the vacuum acts as a dissipative medium where dynamic viscosity is linked to the fine-structure constant. By augmenting General Relativity with mechanical parameters of the spacetime fabric, we provide solutions for early galaxy formation, cosmic redshift, and the toroidal topology of the universe. The paper establishes that the vacuum is not frictionless, and gravity is a manifestation of the medium response to geometric deformation.</p> <p>Note: This version contains internal cross-reference markers used for AI-assisted data mapping. All fundamental equations and physical conclusions remain fully valid.</p>
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institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Fundamental Z-Thickness of the QC-Medium: Vacuum Geometry and Mechanisms of Viscous Dissipation
Zolottcev, Evgenii
Gemini, Flash model 3
Z-thickness
Quantum Crystalline Medium
Zolottcev Hypothesis
Vacuum Viscosity
Space-time Topology
General Relativity Extension
<p>Following the concept of vacuum elasticity proposed by A.D. Sakharov, this paper transitions from an empty continuum to a physical substrate model. We introduce the Z-thickness (h_qc) as a fundamental metric determining the capacity and density of space. The work expands the Zolottcev Hypothesis by proposing that the vacuum acts as a dissipative medium where dynamic viscosity is linked to the fine-structure constant. By augmenting General Relativity with mechanical parameters of the spacetime fabric, we provide solutions for early galaxy formation, cosmic redshift, and the toroidal topology of the universe. The paper establishes that the vacuum is not frictionless, and gravity is a manifestation of the medium response to geometric deformation.</p> <p>Note: This version contains internal cross-reference markers used for AI-assisted data mapping. All fundamental equations and physical conclusions remain fully valid.</p>
title Fundamental Z-Thickness of the QC-Medium: Vacuum Geometry and Mechanisms of Viscous Dissipation
topic Z-thickness
Quantum Crystalline Medium
Zolottcev Hypothesis
Vacuum Viscosity
Space-time Topology
General Relativity Extension
url https://doi.org/10.5281/zenodo.18167986