Overview manuscript presents an architecture for bio-quantum payload enhancing space-ground communications, suggesting advancements for deep-space missions.
This overview manuscript presents a unified architectural framework for an autonomous Low Earth Orbit (LEO) bio-quantum payload designed to enable leapfrog space-ground telecommunications. The architecture integrates three tightly coupled layers: (1) unitary quantum-to-bio state transduction using ternary xeno-nucleic acid (TNA/PNA) matrices, (2) multi-scale Landauer thermodynamic management through 6D hyper-chaotic routing governed by the Neural-Plasma Audit Protocol (NPAP) and Extanton swarm dynamics, and (3) active physical-layer radiation protection via a magnetized dusty plasma shield driven by high-order Orbital Angular Momentum (OAM) modes. By treating quantum information integrity, entropic dissipation, and cosmic ray shielding as a single closed-loop thermodynamic system, the design achieves structural resilience and computational stability under galactic cosmic ray exposure without relying on conventional passive mass shielding. Special attention is given to material selection for cislunar and deep-space environments, particularly the mitigation of atomic oxygen degradation through oxygen-independent Polyimide-based architectures. The framework is situated within the broader Genesis Mission 2026 roadmap, serving as a foundational node for multi-agent, fractal safety architectures in communication-denied deep-space operations. This work builds on and unifies prior contributions in quantum teleportation routing, NPAP-governed chaotic systems, Extanton swarms, and dissipative protection mechanisms.
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Venerable et al. (2026) studied this question.
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