| _version_ | 1866901889426128896 |
|---|---|
| author | Westwood, Danny |
| author_facet | Westwood, Danny |
| contents | <div>We introduce Fractal Physis, a novel geometric theory of quantum gravity that has the potential to unify quantum mechanics and general relativity through a single, empirically derived coherence support field, extracted from the fractal properties of the Cosmic Microwave Background (CMB).</div> <div> </div> <div>Using wavelet-based decomposition on Planck SMICA data, we construct a scale-dependent coherence function, revealing a structural decoherence mechanism that drives the quantum-to-classical transition without invoking extra dimensions or quantized geometry.</div> <div> </div> <div>Statistical analysis across multipole bands uncovers a sharp coherence collapse near a multipole of approximately 4000, where fractal structures condense into classical mass, aligning with the theory’s prediction of decoherence as a geometric constraint.</div> <div> </div> <div>This framework resolves singularities via collapse wells, predicts decoherence-driven curvature, and offers a minimalist, simulation-friendly alternative to string theory and loop quantum gravity. Fractal Physis bridges quantum and gravitational realms through cosmological structure, with implications for early universe dynamics, black hole physics, and beyond. </div> <div> </div> <div><strong>For questions or collaborations, please contact: danny@wdpmedia.com.</strong></div> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_15202151 |
| institution | Zenodo |
| language | |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Fractal Physis: A Geometric Theory of Quantum Gravity via Structural Decoherence Westwood, Danny Gravity Quantum physics Quantum field theory Physical cosmology <div>We introduce Fractal Physis, a novel geometric theory of quantum gravity that has the potential to unify quantum mechanics and general relativity through a single, empirically derived coherence support field, extracted from the fractal properties of the Cosmic Microwave Background (CMB).</div> <div> </div> <div>Using wavelet-based decomposition on Planck SMICA data, we construct a scale-dependent coherence function, revealing a structural decoherence mechanism that drives the quantum-to-classical transition without invoking extra dimensions or quantized geometry.</div> <div> </div> <div>Statistical analysis across multipole bands uncovers a sharp coherence collapse near a multipole of approximately 4000, where fractal structures condense into classical mass, aligning with the theory’s prediction of decoherence as a geometric constraint.</div> <div> </div> <div>This framework resolves singularities via collapse wells, predicts decoherence-driven curvature, and offers a minimalist, simulation-friendly alternative to string theory and loop quantum gravity. Fractal Physis bridges quantum and gravitational realms through cosmological structure, with implications for early universe dynamics, black hole physics, and beyond. </div> <div> </div> <div><strong>For questions or collaborations, please contact: danny@wdpmedia.com.</strong></div> |
| title | Fractal Physis: A Geometric Theory of Quantum Gravity via Structural Decoherence |
| topic | Gravity Quantum physics Quantum field theory Physical cosmology |
| url | https://doi.org/10.5281/zenodo.15202151 |