Inverse-square critical coverage and constant saturation depth of Weil-BFS novelty on Heisenberg graphs (Cosmochrony spectral admissibility sub-programme)
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Updated
Jul 30, 2026 - TeX
Inverse-square critical coverage and constant saturation depth of Weil-BFS novelty on Heisenberg graphs (Cosmochrony spectral admissibility sub-programme)
Projective Capacity Beyond Expanders: Polynomial-Growth Relaxation Graphs and the Capacity Exponent
Effective spacetime geometry from admissible non-injective projection, with thermodynamic scope explicitly delimited.
Conditional reconstruction of spectral mobility and the Lorentz factor from projective capacity saturation.
Operator Doublets, Erased History Fibres, and the No-Sequential-Re-entry Theorem — fermionic-matter no-go note
Fibre Erasure: Cosmochrony paper on selective erasure of projective fibres
BFS Shell Stratification and the Emergence of Four-Dimensional Lorentzian Geometry
Presentation note for the emergent geometry sub-programme (Cosmochrony)
Proof of the Lifting Hypothesis [H-lift]: Kinetic-Sector Identification via Generator Suppression
Colour Triplet Co-admissibility on Heis(Zq): Numerical Test of Hypothesis H-color
Asymptotic su(2)-Isotropy of the Effective Quadratic Form and the Identification AH = 2
Temporal Casimir Rigidity and Closure of the Effective Metric: Identification of Aτ = 2
Non-Factorisability and the Emergence of Heisenberg Structure from Admissibility Constraints
Refinement Consistency Obstructs Nonlinear Power Lifts of Finite History Measures
Weight Stabilisation of the Admissible Dirichlet Form: Proof of Hypothesis [H-w] from Spectral Universality
Finite S3 countermodel to Heisenberg carrier selection from admissibility axioms
Unique Born-Infeld-lifted temporal residual map yielding the Lorentz factor; the local capacity-metric bridge remains open.
The Spectral Admissibility Sub-Programme: Presentation Note 1
O33 — A Finite Spectral Architecture for Mass-Square Splitting and Mixing: Exact Doublets and Protected Sectors from Weil Admissibility
Fourier-Support Rigidity in Conjugate Weil Sectors: A No-Go Result for Rank-Based Quantum Signatures
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