Physics & Spacepreprint2026-08-22

Genesis of Identical Micro-Black Holes via Gravitational Collapse in Primordial Standing Wave Nodes: A Geometrodynamic Model (v. 11.0)

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Abstract

The fundamental indistinguishability of elementary particles remains an ontological enigma within the Standard Model. We propose a solution based on pure Geometrodynamics, hypothesizing that baryonic and leptonic matter are stable, non-evaporating Micro-Black Holes (Geons) formed in the early Universe via high-energy Primordial Gravitational Wave background interference. Crucially, we introduce a helical node casting mechanism (”rolling mills”) imparting quantized spin, alongside internal centrifugal self-repulsion inherent to Extremal Kerr-Newman metrics to completely halt Hawking evaporation. Furthermore, we expand this framework into a background-independent Single-Geon Scanning Hypothesis. We derive electric charge from intrinsic spin precession, decode quantum jumps via the Dzhanibekov effect, and explain quantum vacuum fluctuations as subthreshold geometric clipping. Appendix A establishes the exact non-linear coupled partial differential equations (PDEs) locking the Geon ring’s counter-propagating internal wave modes into a deterministic standing-wave interference lattice, mapping transverse precessional bending waves directly to longitudinal and cross-sectional registers with zero net-recoil. Additionally, we introduce the Axiom of Dimensional Optimality and Variational Pragmatism: we postulate that the cosmos systematically self-optimizes to exactly a 4D framework (three spatial dimensions and one temporal parameter) as the absolute global minimum threshold required to anchor continuous trajectories into stable topological knots. Finally, we propose a Closed-Loop Cosmology where macroscopic black holes function as informationreset delay lines, forcing the compressed internal wave metrics of collapsing structures to reboot at the absolute zero node of the Big Bang (0,0,0,0) without information loss, establishing an autopoietic, background-independent Teleological Design.

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View paper (DOI)Open access versionOpenAlexZenodo (CERN European Organization for Nuclear Research)Published 2026-08-22

Authors: Michael Bernstein, Gemini Bernstein

Institutions: Google (United States)