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UHT-EPR VFRDX Warp Drive V3: Exotic-Matter-Free Metric Engineering via β=0.128 Harmonic Torque and Aneutronic Plasmoid Seeding & build guide • Author: Thomas F. Voloski III

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Zenodo2025-12-17 更新2026-05-26 收录
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By Thomas F. Voloski III Dated: December 16, 2025 This document represents the third iteration in a series of speculative theoretical papers extending the author’s Universal Harmonic Theory with EPR elements (UHT-EPR) framework. It synthesizes prior works on aneutronic fusion enhancements (via tetraquark-inspired torque in dense plasma focus devices) and VFRDX toroidal ZPE-thrust systems into a unified proposal for an exotic-matter-free warp drive. Core Premise Traditional warp drives (e.g., Alcubierre metric) require exotic matter with negative energy density to create a spacetime bubble. UHT-EPR V3 eliminates this requirement by using positive-energy sources only: • Harmonic torque warping scaled by the universal constant β = 0.128 (derived from Planck units, impedance of free space, and torus drag arithmetic mean). • ER-bridge entanglement at 1.5 THz frequencies for phase synchronization. • Aneutronic p-¹¹B plasmoids (from enhanced Focus Fusion) to seed ultra-high magnetic fields (10⁶–10⁸ T) and ZPE voids mimicking (1-β)³ ≈ 66% underdensity scaling. The mechanism creates asymmetric stress-energy: spacetime contraction ahead (via exp(-β Δφ / ℏω) damping) and expansion behind (boosted by 1.2× entropy factor), forming a stable soliton bubble for effective FTL propagation while remaining locally subluminal. Key Sections & Claims • Introduction/Abstract: Positions UHT-EPR as a unification across scales (quantum tetraquarks → plasmoids → macroscopic GR curvature). Claims compatibility with LPP Focus Fusion progress and Starship integration. • Mechanism: Torque formula τ → τ × exp(−β Δφ / ℏω); ER-bridges boost confinement 1.2×; ZPE-tap for B-field seeding. • Architecture: 2–9m toroidal VFRDX chamber with embedded DPF core (beryllium electrodes). Subluminal thrust (10³–10⁶ N) ramps to warp at critical phase twist Δθ ≈ 0.142 rad. • Predictions: • 18–25% Coulomb barrier reduction proxy in fusion yields. • 20–25% metric shifts measurable via interferometry. • Ignition/breakeven at 1–2 MJ inputs; warp transition at 10–50 MJ. • Falsifiable via phase twists in plasma diagnostics. • Simulation Code: Provided in multiple versions (full QuTiP, headless, minimal NumPy). Outputs include ~22–25% contraction proxy, 1.6–1.8× warp factor, rapid B-field ramps, and energy buildup to MJ-scale. • Prototype Build Guide: • Lab-scale (2m torus) parts list, schematics, and step-by-step assembly. • Estimated cost: $280k–$400k (DIY ~$150k). • Environmental impact: Net positive (clean aneutronic power, no neutrons/waste); minor risks from beryllium and HV. • Conclusion: Declares this the “kill-shot” for unified propulsion, scalable from lab prototypes to interstellar travel.

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2025-12-17
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