Quarks as Coherential Monopoles — The Origin of Color from Three-Dimensional Topology (RCD Paper X — Version 1.1)

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Autore principale: Cerezo, Arturo
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author Cerezo, Arturo
author_facet Cerezo, Arturo
contents <p>Paper X extends Radial Coherential Dynamics beyond vortices and leptons by deriving <strong>quarks as monopoles (point defects)</strong> in the coherential gradient field ∇C. The three “colors” of QCD arise as the <strong>three independent orientations</strong> of monopoles in <strong>three-dimensional space</strong>—a geometric consequence of d = 3 established in earlier RCD work.<br>This framework naturally explains:</p> <ul> <li> <p><strong>Three colors</strong> (three spatial directions),</p> </li> <li> <p><strong>Confinement</strong> (isolated monopoles have infinite energy),</p> </li> <li> <p><strong>Fractional electric charge</strong> via shared vortex winding,</p> </li> <li> <p><strong>SU(3)</strong> as the symmetry of gradient-orientation rotations,</p> </li> <li> <p><strong>Asymptotic freedom</strong> from gradient stiffness at short distances.</p> </li> </ul> <p>RCD reproduces correct orders of magnitude for αs(mZ), string tension, mass ratios, and proton–neutron mass differences. Combined with Paper IX, this completes the <strong>fermionic sector</strong> of the coherential Standard Model.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17879033
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Quarks as Coherential Monopoles — The Origin of Color from Three-Dimensional Topology (RCD Paper X — Version 1.1)
Cerezo, Arturo
RCD
quarks
monopoles
color charge
SU(3)
confinement
gradient topology
strong interaction
asymptotic freedom
fractional charge
Standard Model
coherential physics
Theoretical Physics
High Energy Physics
Particle Physics
Quantum Field Theory
Mathematical Physics
Topological Field Theory
<p>Paper X extends Radial Coherential Dynamics beyond vortices and leptons by deriving <strong>quarks as monopoles (point defects)</strong> in the coherential gradient field ∇C. The three “colors” of QCD arise as the <strong>three independent orientations</strong> of monopoles in <strong>three-dimensional space</strong>—a geometric consequence of d = 3 established in earlier RCD work.<br>This framework naturally explains:</p> <ul> <li> <p><strong>Three colors</strong> (three spatial directions),</p> </li> <li> <p><strong>Confinement</strong> (isolated monopoles have infinite energy),</p> </li> <li> <p><strong>Fractional electric charge</strong> via shared vortex winding,</p> </li> <li> <p><strong>SU(3)</strong> as the symmetry of gradient-orientation rotations,</p> </li> <li> <p><strong>Asymptotic freedom</strong> from gradient stiffness at short distances.</p> </li> </ul> <p>RCD reproduces correct orders of magnitude for αs(mZ), string tension, mass ratios, and proton–neutron mass differences. Combined with Paper IX, this completes the <strong>fermionic sector</strong> of the coherential Standard Model.</p>
title Quarks as Coherential Monopoles — The Origin of Color from Three-Dimensional Topology (RCD Paper X — Version 1.1)
topic RCD
quarks
monopoles
color charge
SU(3)
confinement
gradient topology
strong interaction
asymptotic freedom
fractional charge
Standard Model
coherential physics
Theoretical Physics
High Energy Physics
Particle Physics
Quantum Field Theory
Mathematical Physics
Topological Field Theory
url https://doi.org/10.5281/zenodo.17879033