Mass as Stabilized Directional Energy: A Resonance-Based Interpretation of Inertia and Gravity

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Auteurs principaux: Rezapour, Majid, Rezapour, Ramin
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2025
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author Rezapour, Majid
Rezapour, Ramin
author_facet Rezapour, Majid
Rezapour, Ramin
contents <p>This paper introduces a novel interpretation of mass as a manifestation of stabilized directional energy, grounded in the Spark Model and resonance field dynamics. Unlike classical perspectives that view mass as a fixed scalar or a consequence of spacetime curvature, our model proposes that mass arises from coherent energy vector locking within dynamic fields. This reinterpretation provides a unified conceptual bridge between quantum field behavior and macroscopic inertial and gravitational phenomena. Inertia emerges from resistance to perturbations of phase-locked directional energy flows, while gravity results from the distortion of resonance paths imposed by stabilized mass structures. The model further suggests a unified field perspective in which mass is a topologically stabilized energy knot, enabling new insights into the mass gap, decoherence, and quantum-gravitational interactions.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_16704245
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Mass as Stabilized Directional Energy: A Resonance-Based Interpretation of Inertia and Gravity
Rezapour, Majid
Rezapour, Ramin
Mass
Inertia
Gravity
Directional Energy
Resonance Field
Spark Model
Quantum Field Theory
Unified Field Theory
Decoherence
Topological Stability
Mass Gap
Field Dynamics
Field Dynamics
Quantum Gravity
Mass Generation Mechanisms
Theoretical Physics
Information Physics
<p>This paper introduces a novel interpretation of mass as a manifestation of stabilized directional energy, grounded in the Spark Model and resonance field dynamics. Unlike classical perspectives that view mass as a fixed scalar or a consequence of spacetime curvature, our model proposes that mass arises from coherent energy vector locking within dynamic fields. This reinterpretation provides a unified conceptual bridge between quantum field behavior and macroscopic inertial and gravitational phenomena. Inertia emerges from resistance to perturbations of phase-locked directional energy flows, while gravity results from the distortion of resonance paths imposed by stabilized mass structures. The model further suggests a unified field perspective in which mass is a topologically stabilized energy knot, enabling new insights into the mass gap, decoherence, and quantum-gravitational interactions.</p>
title Mass as Stabilized Directional Energy: A Resonance-Based Interpretation of Inertia and Gravity
topic Mass
Inertia
Gravity
Directional Energy
Resonance Field
Spark Model
Quantum Field Theory
Unified Field Theory
Decoherence
Topological Stability
Mass Gap
Field Dynamics
Field Dynamics
Quantum Gravity
Mass Generation Mechanisms
Theoretical Physics
Information Physics
url https://doi.org/10.5281/zenodo.16704245