遇见数据集

UHT-EPR + Uon v3.0: Full 3D Torsional Uon Lattice Simulation with 4+2 Compact Dimensions, Spherical Breathing Core, and Emergent CODATA-c

收藏
Zenodo2026-06-09 更新2026-05-26 收录
官方服务:

资源简介:

UHT-EPR + Uon v3.0 Capstone: Full 3D Torsional Uon Lattice Simulation with 4+2 Compact Dimensions, Spherical Breathing Core, and Emergent CODATA-c This is the official v3.0 capstone of the Universal Harmonic Theory (UHT-EPR + Uon) framework. It presents the first complete, reproducible 3D simulation of the vacuum as a filled dipolar uon lattice — the working substrate derived directly from the original 405-page ontological document. Key breakthroughs implemented and verified:- Cubic dipolar uon lattice (periodic boundaries, 6 nearest neighbors) with exact second-order torsional dynamics- Full 4+2 dimensional ontology: 3 large spatial dimensions + 2 compact torsional axes per site (polarization + flux-tube winding, each with independent weaker stiffness K_comp)- Spherical breathing core (cyclic universe model): radial density gradient + global sinusoidal modulation (finite core, no Big Rip or Crunch)- Emergent light speed exactly matching CODATA c (zero free parameters) via second-order phase dynamics scaled by Rydberg time unit- Macroscopic uon density ridge reproducing the observed Abell 399/401 rotating radio filament (phase-locked twist preserved by damping) Contents of this record:- Complete 11-page PDF (UHT-EPR+Uon capstone 3D simFV3.pdf) with theory summary, Abell 399/401 tie-in, full production roadmap, and all results- Full runnable Python 3 code (NumPy + SciPy) for the SIM3 lattice (N=8 prototype; easily scalable to 32³/64³)- Three high-resolution wavefront visualization PNGs: - Torsional slices (main filament + both compact dimensions) - |ω| main velocity + spherical core radial profile - 3D filament ridge scatter plot showing compact influence- Compressed results file (.npz) with final state vectors This simulation demonstrates ultra-stable coherence, sharp light-like torsional wave propagation, and residual angular momentum exactly as predicted by the original ontology. No dark matter/dark energy fudge factors are required. The vacuum is now a documented, breathing, 4+2-dimensional torsional lattice. Intended use: Run the code locally or in Colab to reproduce the results, extend to cosmological scales, or adapt into hardware (ZPE-wave detectors, lattice-tuned resonance devices, next-gen Resonance Hub torque engine). Future versions will add emergent G/EM phase-drag and full ZPE power spectrum. Citation suggestion: Voloski, T. F. III (2026). UHT-EPR + Uon v3.0: Full 3D Torsional Uon Lattice Simulation with 4+2 Compact Dimensions, Spherical Breathing Core, and Emergent CODATA-c (Capstone). Zenodo. https://doi.org/[insert DOI after upload]

提供机构:
Zenodo
创建时间:
2026-04-07
二维码
社区交流群
二维码
科研交流群
商业服务