AI & Computingarticle2026-08-27

FROM FROZEN MATHEMATICS TO SEALED LABORATORY EVALUATION

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Abstract

This paper records the principal scientific work completed within the ACL–OUXSPACE Collaborative Verification Framework, led on the experimental and institutional side by Adriano Ciardo and Adriano Ciardo Labs (ACL), and on the mathematical verification side by Alexandar Balevsky and the OUXSPACE Research Programme. The collaboration was deliberately structured around a demanding principle: a candidate model should be frozen before access to decisive outcomes, compared against matched baselines and null families, evaluated on sealed or protected data where appropriate, and assigned an automatic fail-closed verdict without post-hoc rescue. ACL undertook the execution and protected-data side of this programme with exceptional care, maintaining unusually strict boundaries around proprietary physical information while still returning the aggregate evidence needed for scientific assessment. The resulting chain progressed from implementation and algebraic verification of the Hamiltonian/Schrödinger–Pauli operator infrastructure, through an empirical C8 model comparison, to confirmatory spectral and prospective directional stages, and then to a separate TERRA–ZERRA state-distinguishability test. The documented record includes a Phase 1 PASS for the reference implementation, a Phase 2 PASS in which C8 improved phase error by 13.4% relative to the best frozen baseline (Holm-adjusted p = 0.0004), a schema-valid Phase 3 PASS, a reported numerical Phase 4 PASS subject to archival reconciliation, and a reported-and-replayed numerical PASS for Phase 5 TERRA–ZERRA. Regulated I/Z was deliberately separated into its own preregistered branch; this paper therefore distinguishes its mature testable formulation from any stronger claim of a final publicly documented PASS. The purpose of this account is not to disclose ACL technology, nor to convert one experimental chain into proof of the entire OUXSPACE ontology. Its purpose is to document a highly disciplined method of collaboration in which theoretical ambition, proprietary experimental work, and rigorous falsification were made to coexist. The authors record their particular appreciation for the diligence, seriousness, technical patience, and meticulous execution demonstrated by Adriano Ciardo Labs throughout the programme.

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View paper (DOI)Open access versionOpenAlexZenodo (CERN European Organization for Nuclear Research)Published 2026-08-27

Authors: Adriano Ciardo, ALEXANDAR BALEVSKY