The Quantum Topological Bridge of Consciousness: Unifying the Pavesi Central Anisotropy Spacetime with Covariant Information Dynamics and Organic Orch-OR Paradigms
HAL (Le Centre pour la Communication Scientifique Directe) 2026 DOI: 10.5281/zenodo.20373776 (opens in new tab)
Study at a glance
AI-extracted from the abstract| Characteristics | Theoretical or philosophical paper Peer reviewed |
|---|---|
| Key points | The paper argues that a new metric, the Pavesi Central Anisotropy, regularizes singularities in general relativity and quantum mechanics, and that extending it to neural microtubules via a Dirac-Pavesi equation and a Master Action allows long-term memory to survive neural collapse through a macro-wormhole. It further claims to resolve the black hole information paradox by establishing information conservation through a Multiverse Scattering Matrix. |
Abstract
This paper presents a definitive, multi-scale unification of mathematical physics andquantum neuroscience through the Pavesi Unified Framework (PUF). We fundamentallyeliminate the standard gravitational and quantum singularities inherent in the classicalΛCDM and Schwarzschild paradigms by introducing the Pavesi Central Anisotropy(PAC) metric. The spatial radial sector of this metric is governed by a non-local Gaussiansmoothed distribution centered at the absolute cosmic or subatomic core r0, acting as aself-consistent physical cutoff. By calculating the exact Einstein Field Equations, we provethat the physical energy density ρ(r) and tidal forces smoothly regularize as r → r0, preventingstructural collapse and horizon freezing.We extend this exact geometric configuration to the biophysical domain, redefining thePenrose-Hameroff Orchestrated Objective Reduction (Orch-OR) model within the neuralmicrotubules. By formulating a covariant Dirac-Pavesi spinorial field equation and an openintegro-differential Master Action (SSPOA) coupled to trans-universal topological boundarysource currents (JµMultiverso), we analytically bypass the quantum decoherence thresholdimposed by the organic thermal bath. We demonstrate that during the physiological collapseof the neural substrate, the local shift in the stress-energy tensor triggers a topological phasetransition. This transition routes the identity-preserving density matrix of long-term memorythrough a non-singular, stable macro-wormhole channel into the asymptotic macroscopicvacuum structure. The Black Hole Information Paradox is concurrently resolved via a globallyunitarian Multiverse Scattering Matrix (SPUF), establishing information conservation as anabsolute, invariant geometric law of the Multiverse