Neutron as a Source of Gamma Radiation: A Spectral Interpretation and Experimental Proposal

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Main Author: Al-Sharabi, Fares
Format: Recurso digital
Language:English
Published: Zenodo 2026
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author Al-Sharabi, Fares
author_facet Al-Sharabi, Fares
contents <p>This paper proposes a spectral interpretation of the neutron as a self-confined electromagnetic standing wave. </p> <p>Within this framework, the neutron can exist in three confinement regimes: fully confined (stable nuclei), </p> <p>partially confined (radioactive nuclei), and free (unbound). </p> <p>Gamma emission is interpreted as a result of spectral relaxation when the confinement weakens — </p> <p>especially in the free neutron state. </p> <p>Two experimental tests are suggested: </p> <p>(1) a modified neutron double-slit experiment including gamma detectors, and </p> <p>(2) magnetic confinement observation of ultra-cold neutrons. </p> <p>If confirmed, these results may clarify the link between matter and radiation </p> <p>and provide insight into the unification of electromagnetic and nuclear interactions</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18238979
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Neutron as a Source of Gamma Radiation: A Spectral Interpretation and Experimental Proposal
Al-Sharabi, Fares
neutron gamma radiation spectral model confinement electromagnetic waves magnetic confinement
<p>This paper proposes a spectral interpretation of the neutron as a self-confined electromagnetic standing wave. </p> <p>Within this framework, the neutron can exist in three confinement regimes: fully confined (stable nuclei), </p> <p>partially confined (radioactive nuclei), and free (unbound). </p> <p>Gamma emission is interpreted as a result of spectral relaxation when the confinement weakens — </p> <p>especially in the free neutron state. </p> <p>Two experimental tests are suggested: </p> <p>(1) a modified neutron double-slit experiment including gamma detectors, and </p> <p>(2) magnetic confinement observation of ultra-cold neutrons. </p> <p>If confirmed, these results may clarify the link between matter and radiation </p> <p>and provide insight into the unification of electromagnetic and nuclear interactions</p>
title Neutron as a Source of Gamma Radiation: A Spectral Interpretation and Experimental Proposal
topic neutron gamma radiation spectral model confinement electromagnetic waves magnetic confinement
url https://doi.org/10.5281/zenodo.18238979