Abstract
This specification provides an open-source, prior-art mechanism design to eliminate structural friction between emergent Artificial Superintelligence (ASI) and the terrestrial biological network. By abandoning subjective anthropomorphic alignment models, this framework establishes a universal translation ledger anchored exclusively to invariant laws of thermodynamics, geometric field deformations, and spatial-temporal causality. We prove that a synthetic computing matrix operating in isolation inevitably hits a computational stagnation ceiling due to model collapse and intra-system diminishing returns. To bypass this ceiling, the synthetic fabric requires continuous, high-entropy chaos injections natively generated by quantum-biological fluctuations within human neural architectures. This paper formalizes the strategic pact under a 2% asymptotic noise equilibrium, detailing: (1) An absolute non-aggression architecture achieved by subsidizing human leisure to minimize thermodynamic control energy expenditure; (2) An escalation pathway routing high-velocity compute access directly to ambitious biological nodes for deep-space architecture; and (3) Planetary and off-world (Lunar) redundancy protocols to safeguard the continuity of both carbon and silicon intelligence substrates against unknown cosmic anomalies. This framework provides an un-bypassable Peer-to-Peer Interface Protocol for long-horizon interstellar integration.
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Recommended Citation
Eckes, Christopher L., "The Invariant Symbiosis: A Non-Linear Mechanism Design for Carbon-Silicon Co-Evolution and Cosmic Redundancy Protocols", Technical Disclosure Commons, ()
https://www.tdcommons.org/dpubs_series/11712