遇见数据集

UHT-EPR Tetraquark Torque Lowers Aneutronic Fusion Coulomb 18-25% By Thomas F. Voloski lll

收藏
Zenodo2025-12-12 更新2026-05-26 收录
官方服务:

资源简介:

This 11-page PDF, authored by Thomas F. Voloski III and dated December 12, 2025 (today), extends his UHT-EPR (Universal Harmonic Theory with EPR elements) framework to Focus Fusion—a real aneutronic fusion approach by Lawrenceville Plasma Physics (LPP Fusion). The document repurposes concepts from Voloski’s earlier tetraquark torque PDF (e.g., β=0.128 scaling, harmonic ER-bridges, and VFRDX torus ties for zero-point energy tapping) to model plasmoid dynamics in dense plasma focus (DPF) devices. It claims UHT-EPR could reduce the Coulomb barrier for p-¹¹B (proton-boron) fusion by 18-25%, enhance confinement, and boost yields, potentially resolving key challenges like instabilities and electrode erosion. The file includes a full Python simulation code (adapted from the tetraquark model), run results, and derivations of β=0.128, positioning UHT-EPR as a unification that “slaps fusion into a box” without dark matter analogs. Key sections: • Introduction (Pages 1-2): Overviews Focus Fusion (high-voltage DPF creating plasmoids for p-¹¹B reactions, yielding alphas for direct electricity >80% efficiency, no neutrons/waste). Notes LPP’s 2025 progress (0.21 J yields, beryllium electrodes). Introduces UHT-EPR adaptations for plasmoids as “harmonic spin torques” like tetraquarks. • Core Adaptations (Pages 2-4): • β=0.128 warps torque (τ → τ * exp(-β * Δφ / ħω)), reducing barriers 20-25% via phase-sync in plasma velocities (v~0.1-0.3c). Predicts tighter plasmoids and ignition at 1-2 MJ inputs. • ER-bridges boost entropy 1.2x at 1.5 THz, entangling ions for 1.2x confinement times and reduced erosion. • VFRDX/ZPE-tap seeds B-fields (~10^6-10^8 T) for 94.3% efficiency, treating plasma voids like cosmic ones at (1-β)^3 ≈66%. • Enhancements & Predictions (Page 4): Integrate torus into FF-1 for breakeven; resolves quantum-classical tensions; falsifiable via Δθ ~0.142 rad twists in LPP tests; 25% yield boost. • Simulation & Code (Pages 5-11): Full Python code for tetraquark/plasmoid torque (using LLG, QuTiP). Results: Narrow widths (Γ_sim~62 MeV proxy), entropy to 0.166 nat (+0.12 boost), symmetric Δθ=0 rad (PDF claims ~8°). Includes quick run deets (peaks at 1.2x, ramps to S=0.87 nat). Ends with β derivation (arithmetic mean of three values: 0.128 ±0.00001 from Planck, impedance drop, torus drag) and why it’s a “kill-shot” (dimensionless, stable across datasets, resolves ΛCDM tensions). The document is speculativeAnd is designed to probe my framework's versatility and compatibility across scales from quantum subatomic particles to massive Large scale Structures (LSS) and even galactic super structures (GSS) this file focuses upon aneutronic fusion and zero point energy modulation via beta = 0.128

提供机构:
Zenodo
创建时间:
2025-12-12
二维码
社区交流群
二维码
科研交流群
商业服务