Compact Objects as Almost-Perfect All:All Entanglement Graphs: From fast scrambling and weak-field gravity to a testable gap-kilonova prediction

v5.8 (store and 3D): 13pp main text + 21pp S1-S12 methods supplement (S12 +reversible-store and operational-3D-vacuum methods, module map +3, STORE0 kill wire), 49 references, 2253 tests (2251 passed + 2 skipped), 86 figures + 8 draft-render PNGs. STORE-0: kept-xi store recovers exact predecessors (5784/5784 rows, 235 events) and closes the energy account (<3e-14) with earned minimality (discrete c + d required), filed as kept information; DIM-3-0: J3 lift exactly quotient-cubic with 3D far-field laws while 2D-calibrated blind rulers misread known-3D three proven ways (DIM-3-1 filed); model.md v0.9. v4.1 sources removed (git history retains); consistency tests repointed to the v5 paper. v5.7 (field completion): 13pp main text + 21pp S1-S12 methods supplement (extended S12: VAC-0 Final MIXED, split/merge/reservoir/trigger/rewire/fiber/info/source/vacuum-trio methods), 49 references, 2194 tests (2192 passed + 2 skipped), 86 figures + 8 draft-render PNGs. Twelve follow-up campaigns: substrate uniqueness dissolved into per-phenomenon classes (nothing requires uniquely J2); split residual xi isolated (never singleton) with fiber measure filed as 520-dof debt; probability-free books closed exactly (pred==succ 143/143); merge update unique/covariant/ledgered with reservoir account identified as lost inverse information; 19 trigger conditions censused with zero firing implications; no earned rewire selector; domain interfaces radiative, hidden textures visible-but-silent, vacua robust to T=4000; sources as boundary data with mismatch-only release; model.md v0.8 (extended F-layer). Computational companion to a phenomenological model in which black hole interiors are almost-perfect all:all entanglement graphs, horizon area counts exterior legs (A = 4ln2 k lp^2), and micro-holes undergo a point-to-horizon phase transition. v5.6 (relational field program): FP1/FP2 field postulates with derived B/J anatomy, EM-1 falsification, contraction/splitting ontology + conditional accounting, observer quotient (blind d_O = 2.02), joint vacuum family, hidden sector, linearity null + response kernel, filed dynamics debts; model.md v0.7 (F-layer); T7/D1 small-N graphvk closure. v5.0 journal cut; v4.1 (BV scale-up): UV tortuosity-as-scattering derived from ln2 (c = 0.44-0.60, p = 2c); N = 4000/8000/16000 campaigns hold p = 0.93/0.94/0.91 with measured UV turnover; exact shell distance oracle + torch backend; beta(N) log-linear over 6 points. v4.0 (No Neutron Stars): pulsars, gap objects, and black holes unified as low-k graphs; J0737 2PN measured p = 0.913+-0.049 (80 graphs N=1020 exact, 0.1 sigma); leg-shedding kilonovae with a falsifiable gap prediction and O5 protocol. Includes reproducible simulations (Secs 1-3 + Appendices A-BS + BU, BV), paper drafts (Markdown + LaTeX/PDF), figures, tests, and an interactive demo. Code MIT, text/figures CC BY 4.0.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-03
DOI
https://doi.org/10.5281/zenodo.23114720
Primary Topic
Machine Learning in Materials Science
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article
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article

Compact Objects as Almost-Perfect All:All Entanglement Graphs: From fast scrambling and weak-field gravity to a testable gap-kilonova prediction

Philippe Leblond
Zenodo (CERN European Organization for Nuclear Research)
Machine Learning in Materials Science
article

Compact Objects as Almost-Perfect All:All Entanglement Graphs: From fast scrambling and weak-field gravity to a testable gap-kilonova prediction

Philippe Leblond
article en

Abstract

v5.8 (store and 3D): 13pp main text + 21pp S1-S12 methods supplement (S12 +reversible-store and operational-3D-vacuum methods, module map +3, STORE0 kill wire), 49 references, 2253 tests (2251 passed + 2 skipped), 86 figures + 8 draft-render PNGs. STORE-0: kept-xi store recovers exact predecessors (5784/5784 rows, 235 events) and closes the energy account (<3e-14) with earned minimality (discrete c + d required), filed as kept information; DIM-3-0: J3 lift exactly quotient-cubic with 3D far-field laws while 2D-calibrated blind rulers misread known-3D three proven ways (DIM-3-1 filed); model.md v0.9. v4.1 sources removed (git history retains); consistency tests repointed to the v5 paper. v5.7 (field completion): 13pp main text + 21pp S1-S12 methods supplement (extended S12: VAC-0 Final MIXED, split/merge/reservoir/trigger/rewire/fiber/info/source/vacuum-trio methods), 49 references, 2194 tests (2192 passed + 2 skipped), 86 figures + 8 draft-render PNGs. Twelve follow-up campaigns: substrate uniqueness dissolved into per-phenomenon classes (nothing requires uniquely J2); split residual xi isolated (never singleton) with fiber measure filed as 520-dof debt; probability-free books closed exactly (pred==succ 143/143); merge update unique/covariant/ledgered with reservoir account identified as lost inverse information; 19 trigger conditions censused with zero firing implications; no earned rewire selector; domain interfaces radiative, hidden textures visible-but-silent, vacua robust to T=4000; sources as boundary data with mismatch-only release; model.md v0.8 (extended F-layer). Computational companion to a phenomenological model in which black hole interiors are almost-perfect all:all entanglement graphs, horizon area counts exterior legs (A = 4ln2 k lp^2), and micro-holes undergo a point-to-horizon phase transition. v5.6 (relational field program): FP1/FP2 field postulates with derived B/J anatomy, EM-1 falsification, contraction/splitting ontology + conditional accounting, observer quotient (blind d_O = 2.02), joint vacuum family, hidden sector, linearity null + response kernel, filed dynamics debts; model.md v0.7 (F-layer); T7/D1 small-N graphvk closure. v5.0 journal cut; v4.1 (BV scale-up): UV tortuosity-as-scattering derived from ln2 (c = 0.44-0.60, p = 2c); N = 4000/8000/16000 campaigns hold p = 0.93/0.94/0.91 with measured UV turnover; exact shell distance oracle + torch backend; beta(N) log-linear over 6 points. v4.0 (No Neutron Stars): pulsars, gap objects, and black holes unified as low-k graphs; J0737 2PN measured p = 0.913+-0.049 (80 graphs N=1020 exact, 0.1 sigma); leg-shedding kilonovae with a falsifiable gap prediction and O5 protocol. Includes reproducible simulations (Secs 1-3 + Appendices A-BS + BU, BV), paper drafts (Markdown + LaTeX/PDF), figures, tests, and an interactive demo. Code MIT, text/figures CC BY 4.0.

Zenodo (CERN European Organization for Nuclear Research)
Openalex Percentile: Top 26%
Machine Learning in Materials Science
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