Coherent Topology Across Scales: Impeded-Front Cosmogenesis, Topological Defects, and Dimensionless Invariants

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Auteur principal: Smith Jr, Francis G.
Format: Recurso digital
Publié: Zenodo 2025
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_version_ 1866902093175980032
author Smith Jr, Francis G.
author_facet Smith Jr, Francis G.
contents <p>We develop a unified phase-topology framework in which cosmological structure arises from impeded-front expansion in a coherent pre-geometric medium, while topological defects emerge as conserved configurations of the same field. A finite bulk viscosity term ζ(ρ) produces a Coherent Impedance Pressure that modifies early universe expansion and selectively damps high-k perturbations, imprinting observable signatures in low-ℓ CMB alignment, low-k matter power suppression,frequency dependent gravitational-wave propagation, and void statistics. Localized phase windngs naturally generate traversable wormholes with negative effective energy density derived from gradient stress. Dimensionless invariants (χ, ∆, Ξ, Z∗, ntopo) provide a scale-independent description of coherence and topology applicable across physical media. These predictions are falsifiable by near-term cosmological data and by laboratory measurements of coherent phase topology. This framework offers a minimal, testable extension to ΛCDM grounded in conserved stress-energy and phase topology.</p>
format Recurso digital
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institution Zenodo
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publishDate 2025
publisher Zenodo
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spellingShingle Coherent Topology Across Scales: Impeded-Front Cosmogenesis, Topological Defects, and Dimensionless Invariants
Smith Jr, Francis G.
Cosmology
Coherent medium
Bulk viscosity
Impeded-front cosmogenesis
Early universe
CMB low-ℓ anomalies
Matter power spectrum
Cosmic voids
Frequency-dependent gravitational waves
Topological defects
Traversable wormholes
Coherence invariants
Emergent spacetime
Analogue gravity
Large-scale structure
Quantized phase winding
<p>We develop a unified phase-topology framework in which cosmological structure arises from impeded-front expansion in a coherent pre-geometric medium, while topological defects emerge as conserved configurations of the same field. A finite bulk viscosity term ζ(ρ) produces a Coherent Impedance Pressure that modifies early universe expansion and selectively damps high-k perturbations, imprinting observable signatures in low-ℓ CMB alignment, low-k matter power suppression,frequency dependent gravitational-wave propagation, and void statistics. Localized phase windngs naturally generate traversable wormholes with negative effective energy density derived from gradient stress. Dimensionless invariants (χ, ∆, Ξ, Z∗, ntopo) provide a scale-independent description of coherence and topology applicable across physical media. These predictions are falsifiable by near-term cosmological data and by laboratory measurements of coherent phase topology. This framework offers a minimal, testable extension to ΛCDM grounded in conserved stress-energy and phase topology.</p>
title Coherent Topology Across Scales: Impeded-Front Cosmogenesis, Topological Defects, and Dimensionless Invariants
topic Cosmology
Coherent medium
Bulk viscosity
Impeded-front cosmogenesis
Early universe
CMB low-ℓ anomalies
Matter power spectrum
Cosmic voids
Frequency-dependent gravitational waves
Topological defects
Traversable wormholes
Coherence invariants
Emergent spacetime
Analogue gravity
Large-scale structure
Quantized phase winding
url https://doi.org/10.5281/zenodo.17869964