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| Format: | Recurso digital |
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Zenodo
2026
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| Online Access: | https://doi.org/10.5281/zenodo.18904267 |
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Table of Contents:
- <div><strong>Abstract:</strong><br>This paper presents a novel theoretical framework for Faster-Than-Light (FTL) communication that remains consistent with General Relativity without the requirement for negative energy density or exotic matter. Traditionally, Alcubierre-style metrics suffer from "Horizon" issues or gravitational collapse into singularities. The Aditya framework bypasses these limitations by utilizing a high-density, high-eccentricity energy geometry—defined as a "Needle Configuration."</div> <div>By applying extreme angular momentum to this localized energy density, the theory utilizes frame-dragging effects to create a localized spacetime vortex. This "Drill" effect effectively modifies the local metric to reduce the proper distance of the geodesic in the direction of travel. By shortening the spacetime path rather than accelerating through it, information can reach a destination in less time than a standard light-speed signal. This provides a mathematically viable solution for interstellar communication that avoids the infinite energy requirements of traditional Lorentz transformations.</div>