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May 15, 20260 citationsOpen Access

Neutrino Mass and Oscillation in the Cohesion Unified Field Theory

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DGDexter Gilbert

Key Points

  • This research aims to explain the mechanisms behind neutrino mass and oscillation within the Cohesion Unified Field Theory.
  • Utilized geometric mechanisms to elucidate neutrino properties.
  • Investigated closure leakage and density-dependent propagation processes in a unified model.
  • Established closure leakage parameter based on empirical observations.
  • A small recursion-rate deficit, attributed to closure leakage, provides non-zero neutrino mass.
  • Density-dependent propagation leads to phase drift, explaining neutrino oscillation.
  • Consistent with three neutrino species and behaviors based on propagation distance and density.

Abstract

Neutrinos in the Cohesion Unified Field Theory arise from two interacting geometricmechanisms: (1) closure leakage from incomplete n = 6 recursion, and (2) densitydependent propagation governed by the resistance function R(Dst). Closure leakageproduces a small but non-zero recursion-rate deficit, giving neutrinos mass. Densitydependent propagation produces phase drift between partially closed recursion states,giving rise to oscillation. This unified hybrid model explains why neutrinos haveextremely small masses, why there are exactly three neutrino species, why oscillationoccurs, and why oscillation depends on propagation distance and density. The closureleakage parameter ϵ ∼ 10−6–10−7is established as an empirical anchor, consistent withpartial closure geometry, pending first-principles derivation from the torsion intervalstructure of the mass spectrum paper 5. This is the first geometric, mechanical, andscale-consistent account of neutrino mass and oscillation within the Cohesion UFTframework.

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Cite This Study

Dexter Gilbert (2026) studied this question.

synapsesocial.com/papers/6a06b983e7dec685947ac41bhttps://doi.org/10.5281/zenodo.20151060
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