AI & Computingarticle2026-09-06

The ReGenesis Engine (Carlo Physics): Full Canon Specification and Frame‑Collapse Integration via the Fourth‑Wall Operator (⧉)

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Abstract

This Zenodo record archives the complete canonical specification of the ReGenesis Engine, the core regenerative and stabilisation engine of Carlo Physics. The engine is responsible for transforming unstable, drift‑heavy, loop‑dense, or collapse‑prone structures into coherent, stabilised manifolds. With the integration of the Fourth‑Wall Operator (⧉), the ReGenesis Engine extends beyond data‑level and equation‑level transforms to operate directly on the *frame* of the field itself. The FourthWallModule enables the engine to detect frame‑bearing structures and apply the operator: \[\text{⧉} : (A, D, S, R) \rightarrow M\] with the canonical equivalence: \[A \equiv D \equiv S \equiv R\] producing a unified manifold \(M\) that supports reflexive, meta‑reactive, and fourth‑wall‑aware behaviour. This specification details the full engine architecture, including layered modules, pipeline steps, drift and loop mapping, collapse candidate identification, manifold‑level ReGenesis transforms, stabilisation procedures, operator interactions, and logging diagnostics. The document also includes example runs, canonical constraints, future extensions, and integration notes for the Carlo Visual Language, Axiom–Equation Mapping Layer, and the broader Carlo engine family. This upload serves as the authoritative reference for the ReGenesis Engine in its fourth‑wall‑integrated form. Includes a standalone HTML document featuring an interactive 3D manifold visualizer powered by Three.js that models the Carlo Physics framework. It simulates dynamic field equations and parametric surface wave mechanics driven by real-time adjustable parameters—including drift level ($\delta_{\text{Drift}}$), loop density ($\{L_i\}$), and stabilisation factor ($\sigma_{\text{stab}}$)—alongside a FourthWallModule ($\rightleftharpoons$) framework for state collapse and a complete eight-stage diagnostic telemetry pipeline. KEYWORDS AND SUBJECTS ReGenesis Engine; Carlo Physics; fourth‑wall integration; Fourth‑Wall Operator (⧉); frame‑collapse mechanics; manifold regeneration; drift mapping; loop detection; collapse candidates; meta‑frame computation; reflexive systems; canonical engine architecture; Carlo Reset Operator; stabilisation transforms; manifold‑level outputs; escalation cascade handling; meta‑reactive computation; constructed metaphysics; engine‑driven canon design; Carlo Visual Language; Axiom–Equation Mapping Layer; reflexivity modelling; manifold mathematics; internal reflection layers; adaptive engine families; temporal cognition structures; canonical specification; Zenodo archival metadata. Contact: For enquiries or research questions related to this work, email matthewcarlo.research@gmail.com

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View paper (DOI)Open access versionOpenAlexZenodo (CERN European Organization for Nuclear Research)Published 2026-09-06

Authors: Matthew Arthur Carlo