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June 14, 20260 citationsOpen Access

Holographic Dilution and the Emergence of Gravity: Deriving the Planck Mass from the Z3 ⊗ Q3 Error-Correcting Vacuum

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DEDavid EllimanCatholic University of Mozambique

Key Points

  • This research aims to derive the Planck mass utilizing a discrete model of quantum vacuum, addressing gravity's hierarchy problem.
  • Modelled the quantum vacuum as a discrete Z3 ⊗ Q3 topological tensor network.
  • Established a bare lattice Planck mass linked to the hadronic chiral scale.
  • Utilized discrete Feshbach resolvent trace over an invalid error-correction subspace.
  • Achieved a Planck mass of approximately 1.221 × 10^19 GeV, matching the CODATA value to within 0.015%.
  • Demonstrated that gravity can be treated as an emergent metric shear due to colour-confinement tension.
  • Outlined methods to computationally falsify geometric alignments in future work.

Abstract

Audit note. The numerical match MP 1. 221 10^19 GeV at 0. 015\% requires the discrete Feshbach invalid-subspace rank reduction K₄₅₅ = 205 = 256 - 48 - 3, where the ``-3 structurally decoupled virtual states'' is asserted but not derived. §5 of this paper conjectures the reduction without exhibiting the matrix trace; §7 defines the Brillouin-zone computational target that would constitute the actual derivation, but that computation has not been executed. Consequently: (i) the 0. 015\% numerical agreement with CODATA is a posteriori consistency, not a priori derivation; (ii) the K₄₅₅ = 205 value is a phenomenologically motivated parameter chosen to reproduce MP, not a result computed from first principles on the substrate; (iii) per §16. 3 search-space classification, the result sits at class-2 (tight match with unbounded formula freedom on the prefactor) pending the The extreme weakness of gravity compared to the strong nuclear force—a hierarchy of roughly 1040—represents a defining crisis in modern theoretical physics. In continuous Quantum Field Theory (QFT), attempts to compute the macroscopic gravitational con- stant G from vacuum fluctuations generate catastrophic, unrenormalizable ultraviolet (UV) infinities. In this paper, we demonstrate that modelling the quantum vacuum as a discrete, UV-finite Z3 ⊗ Q3 topological tensor network structurally resolves the Hierarchy Problem. Anchoring the spatial lattice to the hadronic chiral scale (ΛQCD ≈ 332 MeV), we establish a bare lattice Planck mass of exactly ΛQCD. Macroscopic gravity is treated as an emergent Eg transverse metric shear generated by colour-confinement tension, diluting holographically across the discrete nodes spanning the global causal patch. To preserve a static G and avoid the phenomenologically ruled-out Dirac Large Number Hypothesis (LNH), we bound this patch with the static, asymptotic de Sitter horizon (RdS = 3/Λ). By replacing continuous Euclidean loop integrals with a discrete Feshbach resolvent trace over the lattice’s invalid error-correction subspace, we derive a parameter-free macroscopic Planck mass of MP ≈ 1. 221 × 1019 GeV, matching the empirical CODATA value (1. 2209 × 1019 GeV) to within∼ 0. 015%. We present the exact discrete Brillouin-zone matrix algebra required to computationally falsify this geometric alignment v2. 0 (2026-06-12): an in-PDF dated status/erratum note has been added reflecting the June 2026 canon audit (DRIFT/ANCHOR ledger) ; see the paper's status note for the specific corrections, supersessions, or upgrades.

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Cite This Study

David Elliman (2026) studied this question.

synapsesocial.com/papers/6a2e46dbb1cc60ccdea8b840https://doi.org/10.5281/zenodo.20672993
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