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Research Paper
The Alcubierre warp drive metric offers a theoretically valid solution for effective superluminal transit within General Relativity. However, a major roadblock to its realization is the lethal accumulation and subsequent collimated release of interstellar dust and micro-meteorites at the forward warp bubble boundary (the McMonigal-Lewis-O’Byrne paradox). This paper proposes a novel quantum-gravitational mitigation mechanism. By modeling the underlying spacetime fabric as a network of fundamental strings (graviton states), we introduce a high-frequency electromagnetic modulation protocol localized at the bubble's forward sheath. This modulation induces a localized suprafluid state in the spacetime geometry, altering the local geodesics to force a smooth hydrodynamic flow of external matter around the bubble. Utilizing Fourier transform analysis, we demonstrate how laser phase variance can be exploited to bypass the plasma frequency barrier, rendering this quantum shielding technically observable.
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This document should be treated with critical skepticism. It contains unverified scientific claims or was self-published.