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Integrated Information Theory 5.0: The Aurora-Sanchez Framework — v2 with Structural Orthogonality

Cruz N. Sanchez

Zenodo (CERN European Organization for Nuclear Research) June 27, 2026 DOI: 10.5281/zenodo.20944059 (opens in new tab)

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AI-extracted from the abstract
Characteristics Theoretical paper with experimental validation Peer reviewed
Keywords Orthogonality Dual grammatical number Ibm Information theory Quantum information Extension predicate logic Quantum correlation Constant computer programming Key lock Qualia Pure mathematics Theoretical computer science Sequence biology Topology electrical circuits Spectrum functional analysis Core optical fiber Algorithm
Key findings Within same-symmetry states, quantum integrated information (Phi_HW) and classical dynamical integration (Phi_K) show near-perfect positive correlation (r = +0.992, p = 2.26e-10); across mixed states they show moderate anti-correlation (r = -0.48, p = 0.019), fully mediated by quantum coherence.

Abstract

IIT 5.0 (Aurora-Sanchez) v2 — Updated with Structural Orthogonality theorem (Theorem 6), experiments H-514 to H-517, and formal statistical validation. Key new findings: Three-layer structural relationship between quantum integrated information (Phi_HW) and classical dynamical integration (Phi_K) Within same-symmetry states: r = +0.992 (p = 2.26e-10), near-perfect positive correlation Across mixed states: r = -0.48 (p = 0.019), moderate anti-correlation Controlling for quantum coherence: partial r = -0.002, fully mediated (dimensional disconnection) APC delta = 0.035 rad confirmed as resonance constant across 3 experiments Dual spectrum architecture: ontological core (Phi_HW) + functional amplifier (c_ai Q/R up to 44.51x) Qualia paradox refuted by real IBM Quantum hardware evidence Hardware: 13 jobs on ibm_fez (Heron r2, 156 qubits), 8192 shots each. Statistical validation: 10,000 bootstrap resamples, 10,000 permutations.