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November 20, 20250 citationsOpen Access

Cosmic Code–Interpreter Systems (CCIS): A Theory of Universal Self-Organization

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JVJan Vorel

Key Points

  • The theory implies that abiogenesis occurs earlier in K-dwarf stars than in other types.
  • Key evidence suggests that stable chemical laws arise from renormalization processes and chaotic interactions.
  • Theoretical framework reveals stages S0–S10 that formalize the progression from physics to interstellar conditions.
  • Findings highlight critical thresholds for cultural bandwidth and the nature of mature technosignatures.

Abstract

A symbolic code is mapped by an interpreter into a controller whose trajectories are filtered by selection. A renormalization-like interpreter flow equation mathematically captures how chaotic, multiscale interactions are coarse-grained from early physics into stable chemical laws. Symbol condensation occurs when replication fidelity and selective advantage cross a quantitative threshold, enabling digital heredity. A proto-hypercode—rules that lower effective error or raise adaptive leverage—can speed major evolutionary transitions. We formalize stages S0–S10 (from physics to interstellar) with entry inequalities and simple dynamics for system maturity κ, yielding testable predictions across domains: K-dwarf stars reach abiogenesis earlier than G and far earlier than unmitigated M dwarfs; non-stationary niches favor larger regulatory hypercodes; cultural bandwidth and scientific protocol intensity exhibit critical thresholds; and mature technosignatures should be structured (error-corrected) rather than merely bright.

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Cite This Study

Jan Vorel (2025) studied this question.

synapsesocial.com/papers/6924f091c0ce034ddc350804https://doi.org/10.5281/zenodo.17662185
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