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Autore principale: Al-Tehami, Mohammed
Natura: Recurso digital
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Pubblicazione: Zenodo 2025
Accesso online:https://doi.org/10.5281/zenodo.17605739
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author Al-Tehami, Mohammed
author_facet Al-Tehami, Mohammed
contents <p>This work introduces the <em>Structural Fabric of Spacetime Dynamics Model</em> (SFSDM), a novel topological framework that unifies particle lifetimes, vacuum geometry, and cosmological signatures through a purely geometric–topological foundation. The model is built on two fundamental quantities the Tehami Constant δ, emerging from a geometric phase mismatch between circular and quasicrystalline metrics, and the Cosmic Time Factor γ derived solely from the fine-structure constant.</p> <p>SFSDM constructs a helical toroidal spacetime manifold supporting topological knots (Higgs excitations), antinodal metric waves (gravitational waves), and a quasicrystalline vacuum structure. Without introducing empirical parameters, the framework achieves remarkable predictive accuracy across seven orders of magnitude in particle lifetimes (RMSE ≤ 0.005).</p> <p>The theory provides testable predictions, including a stochastic gravitational-wave peak near 0.8 mHz (within LISA sensitivity), a +2.7% Higgs–photon coupling deviation testable at HL-LHC, and a resolution of the neutron-lifetime discrepancy. By linking particle stability, vacuum topology, and cosmological phase transitions into a unified structure, SFSDM offers a distinctive pathway toward a geometry-driven unification of quantum and classical physics.</p>
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spellingShingle Structural Fabric of Spacetime Dynamics (SFSDM): A Topological Framework Unifying Particle Lifetimes and Vacuum Structure
Al-Tehami, Mohammed
<p>This work introduces the <em>Structural Fabric of Spacetime Dynamics Model</em> (SFSDM), a novel topological framework that unifies particle lifetimes, vacuum geometry, and cosmological signatures through a purely geometric–topological foundation. The model is built on two fundamental quantities the Tehami Constant δ, emerging from a geometric phase mismatch between circular and quasicrystalline metrics, and the Cosmic Time Factor γ derived solely from the fine-structure constant.</p> <p>SFSDM constructs a helical toroidal spacetime manifold supporting topological knots (Higgs excitations), antinodal metric waves (gravitational waves), and a quasicrystalline vacuum structure. Without introducing empirical parameters, the framework achieves remarkable predictive accuracy across seven orders of magnitude in particle lifetimes (RMSE ≤ 0.005).</p> <p>The theory provides testable predictions, including a stochastic gravitational-wave peak near 0.8 mHz (within LISA sensitivity), a +2.7% Higgs–photon coupling deviation testable at HL-LHC, and a resolution of the neutron-lifetime discrepancy. By linking particle stability, vacuum topology, and cosmological phase transitions into a unified structure, SFSDM offers a distinctive pathway toward a geometry-driven unification of quantum and classical physics.</p>
title Structural Fabric of Spacetime Dynamics (SFSDM): A Topological Framework Unifying Particle Lifetimes and Vacuum Structure
url https://doi.org/10.5281/zenodo.17605739