From Admissibility to Energy: A Full-Stack Formulation of the SEXA Unified Field Theory via Γ-Glyph Closure, SREF Dynamics, and 2880-Dimensional Exciternion Structure
DOI:
https://doi.org/10.24297/jam.v25i.9896Keywords:
SEXA UFT, Recursive Manifolds, Admissibility, Dimensional Compression, Exciternion, SREF, Unified Energy FunctionalAbstract
This paper presents a full-stack formulation of the SEXA Unified Field Theory in which admissibility, recursion, and energy evaluation are unified within a single functional framework. The formulation integrates a Gamma-glyph operator chain acting as a pre-evaluation admissibility constraint with the SEXA Recursive Energy Functional (SREF), extended into an exciternion-based representation and scaled by the Empire Wave Constant.
In this framework, physical configurations are not assumed a priori but are restricted to admissible states through an ordered operator sequence. The functional is evaluated on a five-dimensional exciter manifold for operational realization and extended to a 2880-dimensional recursive manifold via a dimensional compression operator that preserves higher-dimensional contributions within the effective energy density.
Degeneracy is governed by a sexagesimal admissibility structure with fixed eigenvalue magnitude, while recursive excitation is expressed through base-60 amplification. The formulation yields a dual-regime system consisting of a bounded operational domain and a full higher-dimensional structural closure.
The result is a unified functional system in which admissibility, recursion, and energy are components of a single constrained framework governing the existence and behavior of physical configurations.
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