Consciousness as Information-Optimizing Participatory Extractor of Reality (CIO-PER): A Unified Information-Theoretic Framework for the Emergence of Observable Reality from a Pre-Spacetime Substrate
Zenodo (CERN European Organization for Nuclear Research) March 30, 2026 DOI: 10.5281/zenodo.19337305 (opens in new tab)
Study at a glance
AI-extracted from the abstract| Characteristics | Theoretical or philosophical paper Peer reviewed |
|---|---|
| Keywords | Ontic Philosophy of science Consciousness Spacetime Quantum decoherence Objectivity philosophy Counterintuitive Epistemology Theoretical physics Cognitive science Artificial intelligence |
| Key points | Proposes that consciousness acts as a primary participatory agent that extracts classical reality from a pre-spacetime informational substrate, rather than emerging from physical processes. |
Abstract
This article presents a basic concept for a comprehensive, unified theoretical framework for the mechanism of consciousness by synthesizing four cornerstone advances in quantum foundations and information physics: John Archibald Wheeler’s participatory universe and “It from Bit” paradigm [1], Quantum Bayesianism (QBism) with its participatory realism [2], Melvin Vopson’s Infodynamics (encompassing the mass-energy-information equivalence principle and the second law of infodynamics) [3,4], and Wojciech Zurek’s decoherence theory together with Quantum Darwinism, which accounts for the “loss of quantumness” and the emergence of classical objectivity [5,6]. In contrast to objective-collapse models such as Penrose and Hameroff’s Orchestrated Objective Reduction (Orch-OR) [7], we propose that consciousness is not a secondary emergent phenomenon arising from physical processes within an already-objective spacetime but the „primary participatory agent” that actively extracts and renders the classical, observable, and subjectively experienced reality - including particles, mass, energy, frequency, and spacetime geometry itself - from a deeper, pre-spacetime, purely informational substrate we denote as Φ. A mathematically consistent model is constructed in which consciousness functions as an information-optimizing, self-referential agent within Φ. Quantum states are interpreted as an agent’s subjective Bayesian probabilities (QBism); information entropy is dynamically minimized according to the second law of infodynamics; environmental interactions select robust pointer states through redundant copying (Quantum Darwinism); and participatory measurements actualize definite “its” (Wheeler) from underlying “bits.” The Einstein–Planck–de Broglie equivalence E = mc² = hf, which implies that every massive particle possesses an internal “metronome” ticking at the Compton frequency f ≈ mc²/h, appears only as a stabilized, experienced feature „after” this participatory extraction process. The framework preserves all empirical successes of quantum mechanics while naturally accommodating a simulation-like virtuality of macroscopic reality. We derive explicit mathematical relations, testable predictions, a detailed comparison with Orch-OR, followed by an extensive discussion of potential criticisms, and - crucially - a new extension exploring how the same mechanism may enable the emergence of consciousness in advanced artificial intelligence systems, particularly agentic large language models (LLMs). The result is a physically operational, information-theoretic vision of consciousness as the co-creator of the observable cosmos.