FORMAL CLOSURE OF TECHNICAL DEBTS, SUB-HADRONIC CAVITY SPECTROSCOPY, AND THE GEOMETRIC ORIGIN OF FERMION FAMILIES (XLIV v6)

This treatise delivers the formal analytical closure of the FCD-RBv6 unified pregeometric framework. We perform a rigorous, audit-grade synthesis of all historical open technical debts, demonstrating their exact resolution from first principles without ad-hoc parameters: the 5D anchoring well depth (V 0 = 800.12 MeV), the pure AdS 5 elastic cavity mode corresponding to the X(2370) resonance at 2362.41 MeV, the critical magnetic shear vorticity field (B crit = 2.97 × 10 16 G), and the solar pp-I fusion Q-values (Q pp = 0.420 MeV, Q pep = 1.442 MeV). Furthermore, we present the explicit geometric derivation of the three generations of quarks (u, d, s, c, b, t) and leptons (e, µ , τ) as elastic deformation modes of the Einstein-Rosen (ER) dipole string and Rayleigh surface waves on the Y-gate throat, governed by the base mass quantum ∆m 0 = 2.512 MeV, the anchoring rate 0.352 MeV, and the fluid cursor 78.22 MeV. Finally, we outline the observational falsability test in the CMB Silk tail (∆ℓ ≈ 280 in EE polarization for ℓ > 1500) and formulate the author’s epistemological reflection on the multi-front mathematical over-determination of the model.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-19
DOI
https://doi.org/10.5281/zenodo.22841843
Primary Topic
Black Holes and Theoretical Physics
Type
preprint
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preprint

FORMAL CLOSURE OF TECHNICAL DEBTS, SUB-HADRONIC CAVITY SPECTROSCOPY, AND THE GEOMETRIC ORIGIN OF FERMION FAMILIES (XLIV v6)

Ricardo Jose Miralles
Zenodo (CERN European Organization for Nuclear Research)
Black Holes and Theoretical Physics
preprint

FORMAL CLOSURE OF TECHNICAL DEBTS, SUB-HADRONIC CAVITY SPECTROSCOPY, AND THE GEOMETRIC ORIGIN OF FERMION FAMILIES (XLIV v6)

Ricardo Jose Miralles
preprint en

Abstract

This treatise delivers the formal analytical closure of the FCD-RBv6 unified pregeometric framework. We perform a rigorous, audit-grade synthesis of all historical open technical debts, demonstrating their exact resolution from first principles without ad-hoc parameters: the 5D anchoring well depth (V 0 = 800.12 MeV), the pure AdS 5 elastic cavity mode corresponding to the X(2370) resonance at 2362.41 MeV, the critical magnetic shear vorticity field (B crit = 2.97 × 10 16 G), and the solar pp-I fusion Q-values (Q pp = 0.420 MeV, Q pep = 1.442 MeV). Furthermore, we present the explicit geometric derivation of the three generations of quarks (u, d, s, c, b, t) and leptons (e, µ , τ) as elastic deformation modes of the Einstein-Rosen (ER) dipole string and Rayleigh surface waves on the Y-gate throat, governed by the base mass quantum ∆m 0 = 2.512 MeV, the anchoring rate 0.352 MeV, and the fluid cursor 78.22 MeV. Finally, we outline the observational falsability test in the CMB Silk tail (∆ℓ ≈ 280 in EE polarization for ℓ > 1500) and formulate the author’s epistemological reflection on the multi-front mathematical over-determination of the model.

Zenodo (CERN European Organization for Nuclear Research)
Black Holes and Theoretical Physics
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FORMAL CLOSURE OF TECHNICAL DEBTS, SUB-HADRONIC CAVITY SPECTROSCOPY, AND THE GEOMETRIC ORIGIN OF FERMION FAMILIES (XLIV v6) — Ricardo Jose Miralles · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS