ANTIMATTER AS A TOPOLOGICAL VISITOR (V v4)
Abstract
In the two-brane geometry of the FCD-RB (Folded Crunch Dipole – Reversed Big Bang) framework, fermions are modeled as topological dipoles whose endpoints reside on opposite, parallel branes connected across a five-dimensional bulk by a microscopic, non-traversable EinsteinRosen (ER) bridge, realizing the ER=EPR conjecture at the particle level. Under this pregeometric ontology, antimatter is not a native inhabitant of our brane. Instead, its appearance on our side corresponds to a discrete topological inversion of the bridge, governed by the global orientation parameter Ω = ±1 and the internal reference wells of the ER geometry. The creation of a matter-antimatter pair is thus revealed as a four-endpoint event whose visible projection on our brane requires the inversion of one dipole, carrying a finite topological cost, while annihilation is a geometrically constrained alignment event. We model the transition dynamics of Ω-inversion in nuclear beta-plus ( β + ) decay using a self-consistent WKB (Wentzel-Kramers-Brillouin) approximation over the asymmetric double-well potential of the Y-gate, resolving the charge-flavor degeneracy of early formulations without physical transport of mass across the bulk. Finally, we propose that CPT symmetry is preserved globally across the brane-antibrane system, explaining the cosmic baryon asymmetry as a natural perspective effect of spatial segregation during primordial inflation.
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Authors: Ricardo J Miralles