# OMEGA — Hacking the Simulation > Observer-Patch Holography in production: patch-consensus computing, χν anti-gravity vehicles, and patch-net AGI. Paper release r2000 (2026-07-27). OMEGA takes one physical framework — Observer-Patch Holography (OPH), where reality is a consensus protocol run by finite observers on a holographic screen — and applies it to three machines. OPH r2000 rests on three axioms: a regulated observer-patch net of twelve-port echosahedral carriers with icosahedral (A₅) symmetry federated onto an oriented S²; agreement between observers on the meaning of shared, translated, or coarse-grained data; and no structure beyond what those constraints pin. Two closure equations fix the pixel constant P and the record capacity N. Every headline number on the site carries a claim tier: theorem, conditional, modeled, open, or excluded. ## Pages - [Hub](/): The three engineering applications of OPH at a glance. - [Principles](/principles): The three axioms, the two closure equations, the patch lattice, repair moves, screen microphysics, and how bulk phenomena are read off the support screen. - [Computing](/computing): Constraint solving by patch consensus — how candidate distributions get biased by collar agreement and filtered by an exact verifier, with SHA-256d as a worked example. - [Anti-Gravity](/antigravity): χν coherent-matter discs, the vertical coherence contrast ΔS_coh, and what the χν bounds paper does and does not license. Reactionless lift from a compact neutral device is excluded. - [AGI](/agi): An artificial brain built from OMEGA chambers as cortical modules running patch-net fixed-point search. - [Lattice](/lattice): Interactive 3D view of the candidate lattice with brightness encoding consensus intensity. - [About](/about): The OPH-to-OMEGA mapping and the paper trail. ## Source - [OPH papers, release r2000](https://github.com/FloatingPragma/observer-patch-holography/tree/r2000) - [Sitemap](/sitemap.xml): Machine-readable index of every public route.