From Quantum Simulation to Topological Property State: Physical Realization of ISRU Lattices for Mars

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Main Author: Evans, Tyler Chad
Format: Recurso digital
Published: Zenodo 2025
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_version_ 1866901724108685312
author Evans, Tyler Chad
author_facet Evans, Tyler Chad
contents <p>This document details the conceptual path from quantum simulation (via QAOA-inspired algorithms) toward physically realizable topological structures for ISRU lattices on Mars. It covers the translation of abstract quantum-optimization outputs into node-link geometries, fault-tolerant configurations, and initial material considerations. The brief includes simulated case studies, graph properties, and system-level resilience metrics. Rooted in biomimetic design and distributed resource routing, this work lays a foundation for future fabrication and on-planet validation. This upload serves as a standalone timestamped element from the broader QRT document suite for public record and citation.</p>
format Recurso digital
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institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle From Quantum Simulation to Topological Property State: Physical Realization of ISRU Lattices for Mars
Evans, Tyler Chad
quantum simulation
QAOA
topological properties
ISRU lattice
Mars
physical realization
fault tolerance
biomimicry
distributed routing
resilience metrics
<p>This document details the conceptual path from quantum simulation (via QAOA-inspired algorithms) toward physically realizable topological structures for ISRU lattices on Mars. It covers the translation of abstract quantum-optimization outputs into node-link geometries, fault-tolerant configurations, and initial material considerations. The brief includes simulated case studies, graph properties, and system-level resilience metrics. Rooted in biomimetic design and distributed resource routing, this work lays a foundation for future fabrication and on-planet validation. This upload serves as a standalone timestamped element from the broader QRT document suite for public record and citation.</p>
title From Quantum Simulation to Topological Property State: Physical Realization of ISRU Lattices for Mars
topic quantum simulation
QAOA
topological properties
ISRU lattice
Mars
physical realization
fault tolerance
biomimicry
distributed routing
resilience metrics
url https://doi.org/10.5281/zenodo.15793928