Quantum-Information Model of «Space-Field-Gravity» with Guse-Guseva Dynamics and the Binary «Bounce-Crunch» Cycle: The Nature of Cosmological Anomalies

Fuente: Zenodo
Guardado en:
Detalles Bibliográficos
Autor principal: Husiev, Igor
Formato: Recurso digital
Publicado: Zenodo 2026
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866901366201384960
author Husiev, Igor
author_facet Husiev, Igor
contents <div class="otQkpb">Abstract<br>This paper presents a concrete cosmological realisation of the Space–<br>Field–Gravity (PPG) framework introduced in a companion paper [1].<br>We apply the connectivity formalism to a cyclic “Bounce–Crunch”<br>model driven by the interaction of a binary system consisting of a<br>Universe and an Anti-Universe. It is established that macroscopic entanglement<br>and the global spin of the system generate the observed<br>dipole anisotropy of the CMB and the “Axis of Evil”.<br>Using the best-fit parameters for the effective gravitational coupling<br>derived in Paper I (α0 = 0.12±0.04, p = 1.8±0.5, zc = 2.3±0.6,<br>δ∗ = 280 ± 80, n = 2.5 ± 0.7), we numerically verify that the enhanced<br>early gravity accelerates structure formation, resolving the<br>JWST high-redshift quasar and SMBH tensions. The cyclic bounce is<br>described as a phase transition of the connectivity field, where the extreme<br>spin during the bounce generates the global CMB anisotropies.<br>The background cosmology, action, and weak-field limits are those of<br>the PPG framework [1].<br><br></div>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_20039766
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Quantum-Information Model of «Space-Field-Gravity» with Guse-Guseva Dynamics and the Binary «Bounce-Crunch» Cycle: The Nature of Cosmological Anomalies
Husiev, Igor
Physics
Cosmology
Quantum mechanics
Astrophysics
Science
Quantum Physics
<div class="otQkpb">Abstract<br>This paper presents a concrete cosmological realisation of the Space–<br>Field–Gravity (PPG) framework introduced in a companion paper [1].<br>We apply the connectivity formalism to a cyclic “Bounce–Crunch”<br>model driven by the interaction of a binary system consisting of a<br>Universe and an Anti-Universe. It is established that macroscopic entanglement<br>and the global spin of the system generate the observed<br>dipole anisotropy of the CMB and the “Axis of Evil”.<br>Using the best-fit parameters for the effective gravitational coupling<br>derived in Paper I (α0 = 0.12±0.04, p = 1.8±0.5, zc = 2.3±0.6,<br>δ∗ = 280 ± 80, n = 2.5 ± 0.7), we numerically verify that the enhanced<br>early gravity accelerates structure formation, resolving the<br>JWST high-redshift quasar and SMBH tensions. The cyclic bounce is<br>described as a phase transition of the connectivity field, where the extreme<br>spin during the bounce generates the global CMB anisotropies.<br>The background cosmology, action, and weak-field limits are those of<br>the PPG framework [1].<br><br></div>
title Quantum-Information Model of «Space-Field-Gravity» with Guse-Guseva Dynamics and the Binary «Bounce-Crunch» Cycle: The Nature of Cosmological Anomalies
topic Physics
Cosmology
Quantum mechanics
Astrophysics
Science
Quantum Physics
url https://doi.org/10.5281/zenodo.20039766