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Bibliographic Details
Main Author: Speckmann, Daniel
Format: Recurso digital
Language:English
Published: Zenodo 2026
Subjects:
Online Access:https://doi.org/10.5281/zenodo.19204682
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Table of Contents:
  • <p>We present a formalized draft of the Emergent Resonant Brane (ERB) framework as a<br>speculative field-theoretic model in which a two-brane vacuum substrate generates effective<br>particle spectra, mixing observables, and stability conditions through resonant mode locking.<br>The model is organized around a single ratio parameter ξ = 3/2, interpreted as the relative<br>vacuum scale of two coupled branes, and a weak interaction scale g = 0.12.<br>We define an effective mismatch functional over rational approximants, derive a candidate<br>stability minimum at ξ = 3/2, and formulate a cavity-based Hamiltonian whose low-lying<br>modes provide an effective spectral basis. Mixing observables are defined as overlap<br>integrals of these modes and the model is assessed via likelihood and Bayesian evidence<br>against a null hypothesis.<br>The centerpiece of this work is the Global Rigidity Matrix (ERB v60), which demonstrates<br>that the simultaneous derivation of subatomic masses, neutrino mixing angles, and<br>cosmological expansion is mathematically locked — rendering independent parameter fitting<br>structurally impossible. The gravitational sector is derived from a refractive index gradient in<br>the vacuum medium (ERB v53), with Black Holes reinterpreted as total-reflection phase<br>mirrors.<br>Core falsifiable prediction: δCP ≈ 352° (to be tested at DUNE ~2030). The manuscript is<br>written as a formal research draft and is not presented as an established physical theory.</p>