Addendum v2.0 to DIOM-DLEQM: Eradication of Phenomenological Parameters and Absolute Geometric Falsification

Version 2.0 Release Notes: In the v1.0 release of this addendum, certain system limits (such as the Spatial Impedance ξ ≈ 1.42) were temporarily treated as free phenomenological parameters inverted from observational data. This version strictly eradicates all such empirical compromises. Subsequent rigorous topological derivations have revealed that these values are not independent variables, but absolute, immutable geometric consequences of a 3D discrete lattice architecture. By transitioning to purely "a priori" first-principles (e.g., the Manhattan distance ratio √2 and the holographic structural cutoff l_c = 2450), this v2.0 matrix establishes zero-parameter falsification triggers, completely removing any curve-fitting leeway for the computational universe model.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-24
DOI
https://doi.org/10.5281/zenodo.22946703
Primary Topic
Algebraic and Geometric Analysis
Type
preprint
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preprint

Addendum v2.0 to DIOM-DLEQM: Eradication of Phenomenological Parameters and Absolute Geometric Falsification

Eaden Xu
Zenodo (CERN European Organization for Nuclear Research)
Algebraic and Geometric Analysis
preprint

Addendum v2.0 to DIOM-DLEQM: Eradication of Phenomenological Parameters and Absolute Geometric Falsification

Eaden Xu
preprint en

Abstract

Version 2.0 Release Notes: In the v1.0 release of this addendum, certain system limits (such as the Spatial Impedance ξ ≈ 1.42) were temporarily treated as free phenomenological parameters inverted from observational data. This version strictly eradicates all such empirical compromises. Subsequent rigorous topological derivations have revealed that these values are not independent variables, but absolute, immutable geometric consequences of a 3D discrete lattice architecture. By transitioning to purely "a priori" first-principles (e.g., the Manhattan distance ratio √2 and the holographic structural cutoff l_c = 2450), this v2.0 matrix establishes zero-parameter falsification triggers, completely removing any curve-fitting leeway for the computational universe model.

Zenodo (CERN European Organization for Nuclear Research)
Institute of Theoretical Physics (CN)
Peace, Justice and strong institutions
Algebraic and Geometric Analysis
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