Ontological Interpretation of the Electron and the Electromagnetic Field. Integration with Roger Penrose's Twistor Geometry

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Main Author: Paruzel, Katarzyna Anna
Format: Recurso digital
Language:English
Published: Zenodo 2025
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author Paruzel, Katarzyna Anna
author_facet Paruzel, Katarzyna Anna
contents <p>Contemporary physics describes the electron and the electromagnetic field within the framework of the Standard Model, Maxwell’s equations, and Quantum Electrodynamics (QED). Although these formalisms are highly effective operationally, they treat the particle and the field as separate entities. In this paper, I present an ontological interpretation in which the electron is a local node of tensions within the Indeterminacy Space, while the electric and magnetic fields are inseparable projections of a single structural code sustaining the particle’s existence.<br>The central element of the model is a reinterpretation of Roger Penrose’s twistor geom- etry. Here, the twistor appears as a fundamental unit of relational organization between the layer of potentiality and the geometric structure of spacetime. In this approach, the electro- magnetic field FAB emerges directly from the twistor representation of the structural code,<br>eliminating the need to postulate a particle–field dualism.<br>The described structure of the electron’s emergence, stabilized by two coupled fields, constitutes a mechanism ensuring the long-term coherence of matter on a cosmic scale—from atoms to galactic structures—preventing the spontaneous decay of organized reality. This approach opens new possibilities for both theoretical and experimental research, particu-larly in extreme conditions where fluctuations may occur in parameters previously consid-ered constant.</p>
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spellingShingle Ontological Interpretation of the Electron and the Electromagnetic Field. Integration with Roger Penrose's Twistor Geometry
Paruzel, Katarzyna Anna
ontological interpretation
potentiality space
structural code
fluctuation Φ
electromagnetic field
electron
twistor geometry
Roger Penrose
spinor formalism
Maxwell equations
unified description of particle and field
field–particle ontology
local potentiality tensions
quantum vacuum structure
fundamental constants stability
<p>Contemporary physics describes the electron and the electromagnetic field within the framework of the Standard Model, Maxwell’s equations, and Quantum Electrodynamics (QED). Although these formalisms are highly effective operationally, they treat the particle and the field as separate entities. In this paper, I present an ontological interpretation in which the electron is a local node of tensions within the Indeterminacy Space, while the electric and magnetic fields are inseparable projections of a single structural code sustaining the particle’s existence.<br>The central element of the model is a reinterpretation of Roger Penrose’s twistor geom- etry. Here, the twistor appears as a fundamental unit of relational organization between the layer of potentiality and the geometric structure of spacetime. In this approach, the electro- magnetic field FAB emerges directly from the twistor representation of the structural code,<br>eliminating the need to postulate a particle–field dualism.<br>The described structure of the electron’s emergence, stabilized by two coupled fields, constitutes a mechanism ensuring the long-term coherence of matter on a cosmic scale—from atoms to galactic structures—preventing the spontaneous decay of organized reality. This approach opens new possibilities for both theoretical and experimental research, particu-larly in extreme conditions where fluctuations may occur in parameters previously consid-ered constant.</p>
title Ontological Interpretation of the Electron and the Electromagnetic Field. Integration with Roger Penrose's Twistor Geometry
topic ontological interpretation
potentiality space
structural code
fluctuation Φ
electromagnetic field
electron
twistor geometry
Roger Penrose
spinor formalism
Maxwell equations
unified description of particle and field
field–particle ontology
local potentiality tensions
quantum vacuum structure
fundamental constants stability
url https://doi.org/10.5281/zenodo.16883955