Higgs Decoupling vs Autonomous Redshift: The Dual Nature of the Photon under Near-Luminal Propulsion

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1. Verfasser: Bruno, Goncalves Preza
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Sprache:Englisch
Veröffentlicht: Zenodo 2025
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author Bruno, Goncalves Preza
author_facet Bruno, Goncalves Preza
contents <p>This paper investigates two contrasting yet complementary interpretations of</p> <p>photon behavior emitted by a spacecraft traveling at velocities approaching the</p> <p>speed of light. We contrast the classical view of a conserved photon, decoupled from</p> <p>the Higgs field and maintaining polarization, against a novel interpretation wherein</p> <p>photons experience autonomous redshift due to effective scalar coupling. We argue</p> <p>that the observed energy behavior of such photons may be the result of dynamic</p> <p>interactions with the Higgs field, leading to a phase-dependent effective mass. This</p> <p>framework offers new insight into the duality of light in extreme relativistic regimes</p> <p>and opens potential paths for interpreting energy loss, signal degradation, and</p> <p>scalar field-mediated resonance in near-luminal propulsion systems.</p>
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id zenodo_https___doi_org_10_5281_zenodo_17171272
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language eng
publishDate 2025
publisher Zenodo
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spellingShingle Higgs Decoupling vs Autonomous Redshift: The Dual Nature of the Photon under Near-Luminal Propulsion
Bruno, Goncalves Preza
Photon Effective Mass
Higgs Field Coupling
Autonomous Redshift
Near-Luminal Propulsion
Scalar Field Compression
Gauge Boson Duality
Quantum Phase Transition
Higgs Decoupling Mechanism
Field-Dependent Redshift
Relativistic Scalar Interactions
<p>This paper investigates two contrasting yet complementary interpretations of</p> <p>photon behavior emitted by a spacecraft traveling at velocities approaching the</p> <p>speed of light. We contrast the classical view of a conserved photon, decoupled from</p> <p>the Higgs field and maintaining polarization, against a novel interpretation wherein</p> <p>photons experience autonomous redshift due to effective scalar coupling. We argue</p> <p>that the observed energy behavior of such photons may be the result of dynamic</p> <p>interactions with the Higgs field, leading to a phase-dependent effective mass. This</p> <p>framework offers new insight into the duality of light in extreme relativistic regimes</p> <p>and opens potential paths for interpreting energy loss, signal degradation, and</p> <p>scalar field-mediated resonance in near-luminal propulsion systems.</p>
title Higgs Decoupling vs Autonomous Redshift: The Dual Nature of the Photon under Near-Luminal Propulsion
topic Photon Effective Mass
Higgs Field Coupling
Autonomous Redshift
Near-Luminal Propulsion
Scalar Field Compression
Gauge Boson Duality
Quantum Phase Transition
Higgs Decoupling Mechanism
Field-Dependent Redshift
Relativistic Scalar Interactions
url https://doi.org/10.5281/zenodo.17171272