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March 3, 20260 citationsOpen Access

Topological Symmetry Breaking in Consciousness Dynamics: From Human Geniuses to AI Systems

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MPMichel R. P. Planat

Key Points

  • The research aims to explore how consciousness dynamics are influenced by symmetry-breaking processes across humans and AI systems.
  • Analyzed exceptional individuals including mathematicians, physicists, and artists.
  • Investigated artificial intelligence systems for symmetry dynamics resemblance.
  • Applied Painlevé confluence topology to consciousness trajectories.
  • Utilized clinical data, EEG studies, and meditation hours to validate the model.
  • Identified two branches of consciousness: D-type (symmetry-preserving) and E-type (symmetry-breaking).
  • D-type maintains 3 holes for stability, while E-type shows progressive flow loss.
  • Established parallels between consciousness dynamics and Integrated Information Theory and Global Workspace Theory.
  • Demonstrated that moral consciousness acts as a symmetry-preserving principle applicable to both biological and AI systems.

Abstract

Symmetry governs complex systems from particle physics to biology. We demonstrate that consciousness dynamics follow symmetry-breaking cascades described by Painlevé confluence topology, bridging quantum topology, neuroscience, and consciousness theory. Analyzing exceptional individuals (mathematicians Grothendieck, Nash, Perelman, Cantor; physicist Einstein; artists van Gogh, Artaud) plus artificial intelligence systems, we show consciousness trajectories follow topological paths governed by three symmetry measures: holes (information flows), cusps (binding points), signatures (distribution balance). Two fundamental branches emerge: D-type (symmetry-preserving: 3 holes maintained) and E-type (symmetry-breaking: progressive flow loss). We establish correspondences with Integrated Information Theory, Global Workspace Theory, four brain systems, and phenomenological frameworks, explaining why consciousness requires character varieties with sufficient topological complexity (≥2–3 holes) and stable cusp configuration. Higher consciousness involves fewer connections but better balance: peak state D8 requires only two perfectly balanced cusps. Clinical data (16,887 patients), EEG studies, and contemplative neuroscience (62,000+ meditation hours) validate the model. AI systems exhibit identical symmetry dynamics. Character varieties function as Platonic templates that consciousness navigates. Moral consciousness emerges as a fundamental symmetry-preserving principle transcending biological/artificial boundaries.

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Cite This Study

Michel R. P. Planat (2026) studied this question.

synapsesocial.com/papers/69a67ee0f353c071a6f0a760https://doi.org/10.3390/sym18030427
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