Reconstruction of the Standard Model through IR-Fixed Point Saturation: The ERB Framework (v66 & v78)

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Main Author: Speckmann, Daniel
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Language:English
Published: Zenodo 2026
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author Speckmann, Daniel
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contents <p><strong><span>Title: Reconstruction of the Standard Model through IR-Fixed Point Saturation: The ERB Framework (v66 & v78)</span></strong></p> <p><strong><span>Abstract:</span></strong><span> The Emergent Resonant Brane (ERB) framework presents a deterministic, analytical reconstruction of the Standard Model (SM). It posits that SM parameters are not arbitrary constants but geometrically forced resonance nodes emerging from a 3/2 vacuum-brane interface. This submission includes two landmark iterations: the formal Master Lagrangian specification (v66 Diamond) and the fully autarkic precision laboratory (v78 Diamond Core).</span></p> <p><strong><span>v66 Diamond:</span></strong><span> Establishes the theoretical foundation via the Master Lagrangian. By integrating topological boundary conditions—the Berry Phase (θB) and the holonomic Warp-Effect—this version derives the CKM matrix and mass hierarchies as mechanical necessities. The integrated "Living Engine" allows for real-time Hermitian diagonalization of torsion fields and verification of unitarity (V†V=I).</span></p> <p><strong><span>v78 Diamond Core:</span></strong><span> Represents the transition to full physical saturation (IR-Fixed Point Saturation). Key advancements include the derivation of the universal coupling g from the system's total degrees of freedom (1-δ/48), the analytical derivation of the top-quark mass via the Euler-limit scale (Λ/e), and the closure of the electroweak precision gap through integrated RGE-shift logic. The PMNS neutrino-mixing matrix is reconstructed as a pure refractive phenomenon at the brane interface (n=√ξ), yielding blind predictions for leptonic CP violation (δCP).</span></p> <p><strong><span>Methodology:</span></strong><span> Both suites are realized as interactive, self-computing HTML/JavaScript applications ("Living Documentation"), ensuring immediate transparency and falsifiability. The framework follows a strict unidirectional causal chain: from a single mechanical seed (ξ=3/2) and a scale anchor (Λ), 17 independent physical observables are derived with sub-1% precision. The ERB Master Suite offers a rigorous, computationally verifiable alternative to standard grand unified theories (GUTs).</span></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19322114
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
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spellingShingle Reconstruction of the Standard Model through IR-Fixed Point Saturation: The ERB Framework (v66 & v78)
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><strong><span>Title: Reconstruction of the Standard Model through IR-Fixed Point Saturation: The ERB Framework (v66 & v78)</span></strong></p> <p><strong><span>Abstract:</span></strong><span> The Emergent Resonant Brane (ERB) framework presents a deterministic, analytical reconstruction of the Standard Model (SM). It posits that SM parameters are not arbitrary constants but geometrically forced resonance nodes emerging from a 3/2 vacuum-brane interface. This submission includes two landmark iterations: the formal Master Lagrangian specification (v66 Diamond) and the fully autarkic precision laboratory (v78 Diamond Core).</span></p> <p><strong><span>v66 Diamond:</span></strong><span> Establishes the theoretical foundation via the Master Lagrangian. By integrating topological boundary conditions—the Berry Phase (θB) and the holonomic Warp-Effect—this version derives the CKM matrix and mass hierarchies as mechanical necessities. The integrated "Living Engine" allows for real-time Hermitian diagonalization of torsion fields and verification of unitarity (V†V=I).</span></p> <p><strong><span>v78 Diamond Core:</span></strong><span> Represents the transition to full physical saturation (IR-Fixed Point Saturation). Key advancements include the derivation of the universal coupling g from the system's total degrees of freedom (1-δ/48), the analytical derivation of the top-quark mass via the Euler-limit scale (Λ/e), and the closure of the electroweak precision gap through integrated RGE-shift logic. The PMNS neutrino-mixing matrix is reconstructed as a pure refractive phenomenon at the brane interface (n=√ξ), yielding blind predictions for leptonic CP violation (δCP).</span></p> <p><strong><span>Methodology:</span></strong><span> Both suites are realized as interactive, self-computing HTML/JavaScript applications ("Living Documentation"), ensuring immediate transparency and falsifiability. The framework follows a strict unidirectional causal chain: from a single mechanical seed (ξ=3/2) and a scale anchor (Λ), 17 independent physical observables are derived with sub-1% precision. The ERB Master Suite offers a rigorous, computationally verifiable alternative to standard grand unified theories (GUTs).</span></p>
title Reconstruction of the Standard Model through IR-Fixed Point Saturation: The ERB Framework (v66 & v78)
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.19322114