Hydrogen Plasma Core Transport Systems with Dual Counter-Rotating Lenses for Cislunar Navigation and Infrastructure
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Abstract This paper presents a hydrogen plasma core transport system for cislunar space, featuring dual counter-rotating lenses that provide dynamic focus, magnetic plasma confinement, and gyroscopic stability from a single integrated mechanism. The plasma core naturally emits at the 1420.405 MHz hydrogen hyperfine transition—the most precisely defined frequency in nature—creating a self-referential system requiring no external oscillators. Three orbital stations positioned at low Earth orbit, the lunar surface, and Sun-Earth Lagrange Point 2 establish a navigation network that transport vehicles read through phase measurement, enabling autonomous position determination without ground-based tracking. The transport system's architecture is described in detail, including the physical arrangement of rotating components and their functional integration. Keywords: hydrogen plasma, counter-rotating lenses, dynamic focus, 1420 MHz, cislunar navigation, transport systems, lunar infrastructure, species survival.



