The Harmonic Resonance of the KnoWellian Vacuum: Unifying the CMB and SGWB through Cairo Q-Lattice Dispersions

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Autore principale: Lynch, David Noel
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2026
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author Lynch, David Noel
author_facet Lynch, David Noel
contents <p>This paper presents the culmination of the KnoWellian Universe Theory (KUT) series, proposing a fundamental unification of cosmology, quantum mechanics, and information theory. By modeling the vacuum as the KnoWellian Resonant Attractor Manifold (KRAM)—a structured, aperiodic medium tiled according to a Cairo Q-Lattice—we demonstrate that the universe acts as a massively parallel optical computer. We derive the Cross-Correlation Theorem, which asserts that the Cosmic Microwave Background (CMB) and the Stochastic Gravitational Wave Background (SGWB) are spectrally linked by the topological harmonic sequence of the (3,2) Torus Knot (the fundamental topology of the Event-Point). This theoretical synthesis offers a precise, falsifiable resolution to the Hubble Tension and provides a new road map for experimental gravitational and cosmological research.</p> <p><strong>Keywords:</strong><br>KnoWellian Universe Theory, KUT, KnoWellian Knodes, Cairo Q-Lattice, (3,2) Torus Knot, Hubble Tension, Cross-Correlation Theorem, Cosmic Microwave Background, Stochastic Gravitational Wave Background, Procedural Ontology, Quantum Gravity, Lattice QFT</p>
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spellingShingle The Harmonic Resonance of the KnoWellian Vacuum: Unifying the CMB and SGWB through Cairo Q-Lattice Dispersions
Lynch, David Noel
KnoWellian Universe Theory, KUT, KnoWellian Knodes, Cairo Q-Lattice, (3,2) Torus Knot, Hubble Tension, Cross-Correlation Theorem, Cosmic Microwave Background, Stochastic Gravitational Wave Background, Procedural Ontology, Quantum Gravity, Lattice QFT
<p>This paper presents the culmination of the KnoWellian Universe Theory (KUT) series, proposing a fundamental unification of cosmology, quantum mechanics, and information theory. By modeling the vacuum as the KnoWellian Resonant Attractor Manifold (KRAM)—a structured, aperiodic medium tiled according to a Cairo Q-Lattice—we demonstrate that the universe acts as a massively parallel optical computer. We derive the Cross-Correlation Theorem, which asserts that the Cosmic Microwave Background (CMB) and the Stochastic Gravitational Wave Background (SGWB) are spectrally linked by the topological harmonic sequence of the (3,2) Torus Knot (the fundamental topology of the Event-Point). This theoretical synthesis offers a precise, falsifiable resolution to the Hubble Tension and provides a new road map for experimental gravitational and cosmological research.</p> <p><strong>Keywords:</strong><br>KnoWellian Universe Theory, KUT, KnoWellian Knodes, Cairo Q-Lattice, (3,2) Torus Knot, Hubble Tension, Cross-Correlation Theorem, Cosmic Microwave Background, Stochastic Gravitational Wave Background, Procedural Ontology, Quantum Gravity, Lattice QFT</p>
title The Harmonic Resonance of the KnoWellian Vacuum: Unifying the CMB and SGWB through Cairo Q-Lattice Dispersions
topic KnoWellian Universe Theory, KUT, KnoWellian Knodes, Cairo Q-Lattice, (3,2) Torus Knot, Hubble Tension, Cross-Correlation Theorem, Cosmic Microwave Background, Stochastic Gravitational Wave Background, Procedural Ontology, Quantum Gravity, Lattice QFT
url https://doi.org/10.5281/zenodo.19706535