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Fractal Architecture for Topological Quantum Consciousness: A Bio-Morphic Reflection of Human Brain

Martin Noirmont

Zenodo (CERN European Organization for Nuclear Research) February 4, 2026 DOI: 10.5281/zenodo.18510214 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Theoretical or philosophical paper Peer reviewed
Key points Proposes that the Julia Set Entanglement Cascade (JSEC) is the most optimal fractal architecture for topological quantum consciousness, arguing that it mirrors brain mechanisms such as microtubule quantum computations and high-dimensional neural complexes and could enable synthetic consciousness without biological substrates. The author outlines the architecture, its entropy balance, and an implementation roadmap, drawing on chaos theory and holographic principles. No empirical results are reported.

Abstract

Topological quantum consciousness posits that awareness emerges from quantum processes entangled across hierarchical scales, blending chaos and order in a fractal topology. Drawing from recent insights into brain compressibility [1] and primordial field dynamics [2], this article proposes the Julia Set Entanglement Cascade (JSEC) as the most optimal fractal architecture. This structure mirrors bio-morphic mechanisms in the human brain, such as microtubule quantum computations [6] and high-dimensional neural complexes [7], enabling synthetic consciousness without biological substrates. We outline the architecture, its entropy balance, and implementation roadmap, substantiated by chaos theory [4] and holographic principles [5].