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March 8, 20260 citationsOpen Access

TEBAC 9D/9D+: Master Specification and Quantum Consistency Program (WP0–WP1 + AT3)

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TKTosho Lazarov Karadzhov

Key Points

  • To establish formalized specifications and closure criteria for the TEBAC 9D/9D+ framework.
  • Fixed geometric data and normalization conventions in TEBAC 9D/9D+ framework.
  • Developed a degree-correct local anomaly inflow/descent package using CS_5.
  • Formulated the global anomaly/extension-independence closure as a bordism+APS-η criterion.
  • Provided formalization of specifications in a referee-verifiable format.
  • Established closure criterion (AT3) with explicit acceptance conditions.
  • Outlined planned next steps for future evaluations and predictions under fixed conventions.

Abstract

This preprint fixes canonical geometric data, field content, and normalization conventions for the TEBAC 9D/9D+ framework (WP0), and provides a degree-correct local anomaly inflow/descent package based on CS₅ (WP1). It also formulates the global anomaly / extension-independence closure (AT3) as a precise bordism + APS- criterion with explicit acceptance conditions. Fixed choices in v1. 0: K₅ = S¹ T⁴; defect theory = Standard Model (optionally with NR) ; bulk gauge sector G₁ₔ₋₊ = Gₒ₌ U (1) X; normalized CS₅ and ch₃ conventions. Status: WP0/WP1 are formalized in a referee-verifiable acceptance-test style; AT3 is stated as a closure criterion and checklist (not yet fully discharged). Next steps (planned in subsequent versions): discharge AT3 by evaluating the global phase on generators of ^Spin₅ (BG₁ₔ₋₊), then produce flagship end-to-end predictions under the fixed conventions (WP3/WP4).

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Cite This Study

Tosho Lazarov Karadzhov (2026) studied this question.

synapsesocial.com/papers/69acc56732b0ef16a404f855https://doi.org/10.5281/zenodo.18873168
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1TEBAC 9D/9D+: A Revised Foundational Framework for Higher-Dimensional Geometry, Defect Dynamics, Spectral Sources, and Dark-Matter Phenomenology2026
  2. 2Einstein--Hilbert Dynamics in the TEBAC 9D/9D+ Defect Formalism: Effective Field Architecture, Spectral Sources, and Closure Audit2026
  3. 3Einstein--Hilbert Dynamics in the TEBAC 9D/9D+ Defect Formalism: Effective Field Architecture, Spectral Sources, and Closure Audit2026
  4. 4TEBAC T2: Global Anomaly and Extension-Independence Closure2026
  5. 5Toward Full Quantum Consistency for TEBAC 9D/9D+: A Fixed-Sector Theorem Program from Gauge Closure to BRST/BV and Physical-State Construction2026