The ERB Framework: Deriving the Standard Model Flavor Hierarchy from a Single Mechanical Postulate - Renormalized Structure of Quantum Field Theory

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Autor principal: Speckmann, Daniel
Formato: Recurso digital
Lenguaje:inglés
Publicado: Zenodo 2026
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author Speckmann, Daniel
author_facet Speckmann, Daniel
contents <p>We present the formal analytic closure of the Emergent Resonant Brane (ERB) framework, version 26. This work demonstrates that the fundamental parameters of the Standard Model are not arbitrary constants but emerge as the unique, stable harmonic limits of a resonant vacuum substrate.</p> <p>The core of the framework is the derivation of the mass-density ratio xi = 1.5 (3/2) as a stable infrared (IR) fixed point of the renormalization group flow. By treating the vacuum as an elastic medium formed by the collision of two primordial branes, we show that any deviation from the 3/2 ratio results in phase dissipation, driving the system toward this topological attractor.</p> <p>Key breakthroughs in v26 include:</p> <ol> <li> <p>Resolution of the Chiral Mass Gap: By mapping the lattice tension to the chiral condensate, the Pion mass is analytically derived at 0.1393 GeV, achieving a 0.18% precision relative to PDG world averages and resolving the previous 10.7% discrepancy.</p> </li> <li> <p>Holonomic Fine-Structure Constant: The value of alpha (1/137.071) is derived through geometric Berry-phase holonomy, connecting the electromagnetic coupling directly to the vacuum's elastic constants.</p> </li> <li> <p>Zero-Parameter CKM Matrix: The fermion mixing hierarchy is established through a deterministic resonance operator, yielding a Mean Absolute Error (MAE) of 9.5e-4 without phenomenological fitting.</p> </li> <li> <p>Physical UV Cut-off: The framework establishes a universal vacuum scale at Lambda = 464.1 GeV, corresponding to the mechanical resolution limit of the brane interface.</p> </li> </ol> <p>The ERB v26 framework provides a geometrically rigid, falsifiable alternative to parameter-heavy unified theories. It predicts a leptonic CP-violating phase of approximately 352 degrees, providing a critical test for the upcoming DUNE experiment. This release includes the full theoretical derivation and the deterministic Python Renormalization Engine for independent verification.</p>
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language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle The ERB Framework: Deriving the Standard Model Flavor Hierarchy from a Single Mechanical Postulate - Renormalized Structure of Quantum Field Theory
Speckmann, Daniel
Emergent gauge symmetry, CKM matrix, CP violation, Jarlskog invariant, U(1) x SU(2) x SU(3), Resonant Brane Model, Flavor Clock, Whip effect, topological modes, quantum field theory, lattice simulation, numerical validation
emergent gauge symmetry
CKM matrix
CP violation
Jarlkog invariant
quantum field theory
Mass Hierarchy
Emergent Symmetry
Einstein-Field-Theory
Bessel Functions
Inertial Warping
<p>We present the formal analytic closure of the Emergent Resonant Brane (ERB) framework, version 26. This work demonstrates that the fundamental parameters of the Standard Model are not arbitrary constants but emerge as the unique, stable harmonic limits of a resonant vacuum substrate.</p> <p>The core of the framework is the derivation of the mass-density ratio xi = 1.5 (3/2) as a stable infrared (IR) fixed point of the renormalization group flow. By treating the vacuum as an elastic medium formed by the collision of two primordial branes, we show that any deviation from the 3/2 ratio results in phase dissipation, driving the system toward this topological attractor.</p> <p>Key breakthroughs in v26 include:</p> <ol> <li> <p>Resolution of the Chiral Mass Gap: By mapping the lattice tension to the chiral condensate, the Pion mass is analytically derived at 0.1393 GeV, achieving a 0.18% precision relative to PDG world averages and resolving the previous 10.7% discrepancy.</p> </li> <li> <p>Holonomic Fine-Structure Constant: The value of alpha (1/137.071) is derived through geometric Berry-phase holonomy, connecting the electromagnetic coupling directly to the vacuum's elastic constants.</p> </li> <li> <p>Zero-Parameter CKM Matrix: The fermion mixing hierarchy is established through a deterministic resonance operator, yielding a Mean Absolute Error (MAE) of 9.5e-4 without phenomenological fitting.</p> </li> <li> <p>Physical UV Cut-off: The framework establishes a universal vacuum scale at Lambda = 464.1 GeV, corresponding to the mechanical resolution limit of the brane interface.</p> </li> </ol> <p>The ERB v26 framework provides a geometrically rigid, falsifiable alternative to parameter-heavy unified theories. It predicts a leptonic CP-violating phase of approximately 352 degrees, providing a critical test for the upcoming DUNE experiment. This release includes the full theoretical derivation and the deterministic Python Renormalization Engine for independent verification.</p>
title The ERB Framework: Deriving the Standard Model Flavor Hierarchy from a Single Mechanical Postulate - Renormalized Structure of Quantum Field Theory
topic Emergent gauge symmetry, CKM matrix, CP violation, Jarlskog invariant, U(1) x SU(2) x SU(3), Resonant Brane Model, Flavor Clock, Whip effect, topological modes, quantum field theory, lattice simulation, numerical validation
emergent gauge symmetry
CKM matrix
CP violation
Jarlkog invariant
quantum field theory
Mass Hierarchy
Emergent Symmetry
Einstein-Field-Theory
Bessel Functions
Inertial Warping
url https://doi.org/10.5281/zenodo.19163666