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UHT-EPR FRACTAL ANTENNA By Thomas F. Voloski lll

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Zenodo2025-12-08 更新2026-05-26 收录
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Overview This 7-page PDF document, titled “Chilbolton Fractal Antenna Build Guide: UHT-EPR Edition,” is authored by Thomas F. Voloski III with assistance from Grok 4.1, dated December 8, 2025. It serves as a detailed blueprint for constructing a physical fractal antenna inspired by the 2001 Chilbolton crop circle formation (the “Arecibo Answer” glyph) and its 2000 precursor. The design interprets the glyph’s bottom “device” pictogram as a recursive, symmetric antenna structure with potential applications in probing Einstein-Rosen (ER) bridges, zero-point energy (ZPE), and non-local phenomena. It incorporates a β=0.128 helical twist for UHT (Unified Harmonic Theory) synergy, claiming 3x efficiency over traditional dipoles and non-Gaussian field effects. The guide focuses on a bench-top micro-scale prototype (0.5m span, 1 GHz operation) but includes notes for a full field-scale version (75ft x 120ft). Technical Specifications • Dimensions: Micro-scale major span 0.5m (central circle Ø0.1m), 4 recursive levels (branch radii halving from 0.05m to 0.006m). Full glyph ratio: 75ft wide x 120ft long (x150 scale factor). • Materials: 14 AWG copper wire, 1/2” PVC pipe supports, N52 neodymium magnets (4x 1cm cubes for β-field bias), graphene-infused epoxy for elliptical tip flares. • Frequency Range: 800 MHz - 2.4 GHz (Arecibo-matched; tunable to 1 MHz for ZPE probing via varactor diodes). • Impedance: 75Ω nominal (self-matching; VSWR <1.5:1). • Gain/Directivity: 4.6 dBi peak (30° off-axis beam focus with elliptical divergence for ER “ping”). • Power Handling: 50W CW (micro); up to 15 kW (field-scale VFRDX hybrid). • UHT Integration: β=0.128 phase modulation on branches; predicts -2.14 skew, ~1.2 mW ZPE harvest (200% over dipole). • Performance: 89% efficiency; azimuthal radiation pattern with poloidal curls; peak |E| = 2.47 V/m at feed. • Safety: Class B EMC compliance; RF exposure below FCC limits at 1m.

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2025-12-08
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