Dark Matter 2 = Proton Mass Derived from the Folds of the Field

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1. Verfasser: Paolo, Viscariello
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2025
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author Paolo, Viscariello
author_facet Paolo, Viscariello
contents <p>We propose that mass, relativistic inertia, and the speed of light limit emerge from a single dynamic mechanism: a spiral vortex of the fundamental field φ. In this framework, particles are stable configurations of a continuous field that organizes into spiral structures due to intrinsic viscosity and angular momentum conservation.</p> <p>Considering the proton as a saturated vortex of radius R_p, we derive:</p> <p><strong>m_p = (ℏ·R_p)/(l_P²·c)</strong></p> <p>which reproduces the measured proton mass with <strong>1.26% error</strong> using only fundamental constants ℏ, c, and the experimental radius R_p. Nuclear density emerges naturally, giving ρ_p ≈ 6×10¹⁷ kg/m³, in agreement with observed values.</p> <p>The model demonstrates that:</p> <ul> <li>Mass is field friction in a compressed vortex</li> <li>The speed of light c is the maximum field vorticity (not a postulate)</li> <li>Dark matter is the deformed field around baryonic nodes</li> <li>Black holes are macroscopic saturated vortices</li> <li>The Compton wavelength is the unrolled spiral projection</li> </ul> <p>Special relativity emerges as kinematic phenomenology of spiral dynamics. All phenomena—mass, c, inertia, gravity, dark matter—derive from the same φ³ spiral mechanism.</p> <p><strong>Zero free parameters. Geometric derivation. Falsifiable predictions.<br><br><br></strong></p> <p><strong>Appendix A</strong><br>Supplementary appendix deriving a geometric energy threshold for proton formation at the GeV scale and its connection with baryon production onset observed in LHC collisions.<strong><br></strong></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17940582
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Dark Matter 2 = Proton Mass Derived from the Folds of the Field
Paolo, Viscariello
proton mass spiral field theory vortex dynamics geometric mass derivation field spiral relativistic limit speed of light emergence
dark matter field deformation baryonic nodes galactic halos Φ³ framework matter-dark matter ratio
Compton wavelength nuclear density proton radius puzzle quantum vortex axion field field coherence
unified field theory emergent mass vortex cosmology non-Standard Model alternative physics independent research
zero free parameters falsifiable predictions geometric physics first principles derivation
<p>We propose that mass, relativistic inertia, and the speed of light limit emerge from a single dynamic mechanism: a spiral vortex of the fundamental field φ. In this framework, particles are stable configurations of a continuous field that organizes into spiral structures due to intrinsic viscosity and angular momentum conservation.</p> <p>Considering the proton as a saturated vortex of radius R_p, we derive:</p> <p><strong>m_p = (ℏ·R_p)/(l_P²·c)</strong></p> <p>which reproduces the measured proton mass with <strong>1.26% error</strong> using only fundamental constants ℏ, c, and the experimental radius R_p. Nuclear density emerges naturally, giving ρ_p ≈ 6×10¹⁷ kg/m³, in agreement with observed values.</p> <p>The model demonstrates that:</p> <ul> <li>Mass is field friction in a compressed vortex</li> <li>The speed of light c is the maximum field vorticity (not a postulate)</li> <li>Dark matter is the deformed field around baryonic nodes</li> <li>Black holes are macroscopic saturated vortices</li> <li>The Compton wavelength is the unrolled spiral projection</li> </ul> <p>Special relativity emerges as kinematic phenomenology of spiral dynamics. All phenomena—mass, c, inertia, gravity, dark matter—derive from the same φ³ spiral mechanism.</p> <p><strong>Zero free parameters. Geometric derivation. Falsifiable predictions.<br><br><br></strong></p> <p><strong>Appendix A</strong><br>Supplementary appendix deriving a geometric energy threshold for proton formation at the GeV scale and its connection with baryon production onset observed in LHC collisions.<strong><br></strong></p>
title Dark Matter 2 = Proton Mass Derived from the Folds of the Field
topic proton mass spiral field theory vortex dynamics geometric mass derivation field spiral relativistic limit speed of light emergence
dark matter field deformation baryonic nodes galactic halos Φ³ framework matter-dark matter ratio
Compton wavelength nuclear density proton radius puzzle quantum vortex axion field field coherence
unified field theory emergent mass vortex cosmology non-Standard Model alternative physics independent research
zero free parameters falsifiable predictions geometric physics first principles derivation
url https://doi.org/10.5281/zenodo.17940582