Physics & Spacepreprint2026-08-29

A Topological Dark Sector Without Exotic Particles Under the Collective Dipole Ontology (II v6)

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Abstract

In the FCD-RBv4 pregeometric framework, the mass of elementary fermions is interpreted not as an ad hoc coupling to an external scalar Higgs field, but as wave energy confined within quantization modes of a microscopic trans-brane Einstein-Rosen (ER) bridge. This bridge persistently connects our matter brane with a mirror conjugate anti-brane, realizing the ER=EPR conjecture at the single-particle level. The total mass budget of each individual dipole is strictly given by MD = m + 4m + m'. The central 4m block represents the continuous elastic tension of the bulk filament. At a collective level, this tension distributes its degrees of freedom statistically as bound/migratory (2mL) and halo/stationary (2mH) dark matter. This formulation naturally explains the observed ~5:1 dark-to-baryonic matter ratio, analytically corrected to exactly 5.32 when incorporating the elastic minima of the double-well flavor geometry. This paper models the dynamic evolution of the dark sector, resolves the Bullet Cluster gravitational lensing offset, solves the Hubble tension through local dipole density fluctuations, and presents nuclear cohesion as a phase-locked toroidal synchronization

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View paper (DOI)Open access versionOpenAlexZenodo (CERN European Organization for Nuclear Research)Published 2026-08-29

Authors: Ricardo J Miralles