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April 3, 20260 citationsOpen Access

Collective Orchestrated Objective Reduction: How Multiple Human Thought Processes Co-Render Shared Classical Reality from Planck-Scale Quantum Foam

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MCMauricio Collío

Key Points

  • This framework aims to explain how shared classical reality emerges from collective human thought processes at the quantum level.
  • Developed a theoretical model based on Penrose's gravitational objective reduction and Orch-OR principles.
  • Extended local collapse time to a global equation involving summed energies of conscious systems.
  • Integrated concepts from quantum biology and experimental collapse data to support predictions.
  • Establishes a link between consciousness optimization and the fidelity of objective reduction rendering.
  • Defines qualia as the interface between individual and collective thought processes.
  • Generates testable predictions without needing new experimental infrastructure.

Abstract

I propose a unified theoretical framework in which shared classical reality emerges as the real-time collective rendering of Planck-scale quantum foam by the summed objective reductions across billions of human and other conscious microtubule networks. Building on Penrose's gravitational OR and the Orch-OR model of Hameroff & Penrose, I extend the local collapse time ≈ / EGħ to a global E₆, ₓ₎ₓ₀₋ = Σᵢ κᵢ · E₆, ₈ across entangled brains, where κᵢ represents the degree of orchestrated coherence in each system. This collective process selects one consistent branch from Tegmark's mathematical universe, projecting stable 3+1D spacetime from Wheeler's quantum foam via pre-geometric co-location in a causal set structure. I further propose that consciousness is not a prerequisite for OR rendering but its evolutionary optimization — biological systems selected for rendering fidelity over hundreds of millions of years, with consciousness as the experiential correlate of high-coherence OR. Qualia are identified with the sequential interface between individual and collective computation, formalized as Qᵢ (t) = ⟨Rᵢ (t) | Ψ₏ₑ₄-₌₀ₓ₇⟩ — the projection of unified individual OR output onto the pre-geometric eigenstate basis. The framework ties directly to existing quantum-biology data and Diósi–Penrose collapse experiments, generates specific collective-scale predictions accessible to current instrumentation without new experimental infrastructure, and engages directly with Aspelmeyer (2026) as a sharpened experimental lever rather than a falsifying result.

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Cite This Study

Mauricio Collío (2026) studied this question.

synapsesocial.com/papers/69cf5f225a333a821460e15ahttps://doi.org/10.5281/zenodo.19356143
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