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June 23, 2026Open Access

Scalar Resonance and Gauge Phenomenology on the Z3 ⊗Q3 Error-Correcting Vacuum

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Authors

DEDavid Elliman

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Overview

Theoretical framework derives scalar interactions in particles, indicating new insights into fundamental physics.

Key Points

  • This research aims to derive the phenomenological signatures of the scalar sector of the Standard Model from an error-correcting vacuum structure.
  • Derived phenomenological signatures and interactions from Z3 ⊗Q3 error-correcting vacuum analysis.
  • Utilized mass as information-theoretic friction to derive Yukawa and vector boson couplings.
  • Applied discrete Feshbach resonance techniques to address invalid subspaces in the model.
  • Linear Yukawa coupling to fermions derived as Mf ∝ mf from QEC query rate.
  • Quadratic coupling to massive vector bosons shown as an algebraic consequence of tensor orthogonality.
  • Destructive interference patterns in H →γγ loop explained through lattice coordination number and bipartite parity.

Cite This Study

David Elliman (2026) studied this question.

synapsesocial.com/papers/6a3a21c7111626ef22ab68a8https://doi.org/10.5281/zenodo.20786280
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