Category:
Research Papers
Sub-Category:
Unification Theories
Date Published:
November 7, 2025
Keywords:
Unified Field Theory; confinement energy; mass closure; weak interaction; recursive field; NOGE framework; topological dynamics; Lagrangian formulation
Abstract:
This paper presents the NOGE v11.1 unified field framework, a minimal and numerically validated Lagrangian model connecting particle, hadronic, and atomic mass scales.
By introducing a recursive confinement term and a topological weak-collapse constant, the framework reproduces known hydrogen, neutron, and bismuth-209 masses within experimental precision.
The proposed Lagrangian integrates kinetic, gauge, emergent-mass, and gravitational components under a single ψ-field formulation.
The weak interaction appears as a topological time law defined by a constant T NOGE , replacing bosonic exchange with recursive coherence collapse.
The theory offers a coherent description of mass emergence across scales and provides testable numerical closure within the established precision range of particle data.
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