Meta-Neurophysics Framework: Relational Integrated Predictive Experience Elevated by RQIG and STCT (RIPE-URS)

The ”Hard Problem of Consciousness” demands a foundational framework that unifies macroscopic informational mechanics with subjective phenomenal feel (Qualia). This paper rigorously elevates the Relational Integrated Predictive Experience (RIPE) framework by subsuming it into Rough Quantum Information Geometry (RQIG), Universal Rough Operator Algebra (UROA), and the Seonggil Theory of Composite Torsion (STCT). We prove mathematically that consciousness is the intrinsic geometric curvature of a predictive self-model evolving on a UROA-roughened manifold. Furthermore, the Global Neuronal Workspace (GNW) ’ignition’ is redefined as an STCT torsional phase transition, while Integrated Information (Φ) is generalized as RQIG quantum entanglement entropy.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-05
DOI
https://doi.org/10.5281/zenodo.23156510
Primary Topic
Philosophy and Theoretical Science
Type
preprint
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preprint

Meta-Neurophysics Framework: Relational Integrated Predictive Experience Elevated by RQIG and STCT (RIPE-URS)

Seonggil Lee
Zenodo (CERN European Organization for Nuclear Research)
Philosophy and Theoretical Science
preprint

Meta-Neurophysics Framework: Relational Integrated Predictive Experience Elevated by RQIG and STCT (RIPE-URS)

Seonggil Lee
preprint en

Abstract

The ”Hard Problem of Consciousness” demands a foundational framework that unifies macroscopic informational mechanics with subjective phenomenal feel (Qualia). This paper rigorously elevates the Relational Integrated Predictive Experience (RIPE) framework by subsuming it into Rough Quantum Information Geometry (RQIG), Universal Rough Operator Algebra (UROA), and the Seonggil Theory of Composite Torsion (STCT). We prove mathematically that consciousness is the intrinsic geometric curvature of a predictive self-model evolving on a UROA-roughened manifold. Furthermore, the Global Neuronal Workspace (GNW) ’ignition’ is redefined as an STCT torsional phase transition, while Integrated Information (Φ) is generalized as RQIG quantum entanglement entropy.

Zenodo (CERN European Organization for Nuclear Research)
Philosophy and Theoretical Science
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