Unified Theory: Phase Dynamics and Mass-Modulated Flat Spacetime
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| Langue: | anglais |
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2026
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| _version_ | 1866902039061069824 |
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| author | Xuan, Junyou (Jax) |
| author_facet | Xuan, Junyou (Jax) |
| contents | <h3>Abstract / Description (Plain Text Version)</h3> <p><span>This work presents a non-geometric gravitational framework based on phase dynamics, redefining the cosmic background as an eternally flat 3D Euclidean space with a globally shared time parameter t. </span><span><span>Gravity is reinterpreted as the real-time modulation of the matter mass operator by a 4D energy density field (rho4). </span></span></p> <p>The paper provides rigorous mathematical validation through:</p> <p><span><strong><span>1PN Expansion</span></strong><span>: Deriving PPN parameters beta = 1 and gamma = 1, aligning with solar system observational constraints such as Mercury's perihelion precession. </span></span><span><span><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup></span></span></p> <p></p> <p> </p> <p><span><strong><span>Quantum Dynamics</span></strong><span>: A WKB-based derivation of the modified Dirac equation that predicts a non-zero attosecond-scale quantum tunneling delay (approximately 10^-18 seconds), matching modern experimental results. </span></span><span><span><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup></span></span></p> <p></p> <p> </p> <p><span><strong><span>Singularity Resolution</span></strong><span>: Introducing a Planck-scale regularization (epsilon) to ensure the well-posedness of field dynamics PDE, effectively eliminating black hole singularities. </span></span><span><span><sup></sup><sup></sup><sup></sup><sup></sup></span></span></p> <p></p> <p><span><span>This framework offers testable predictions that bridge the gap between gravitation and quantum phase transitions.</span></span></p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18776636 |
| institution | Zenodo |
| language | eng |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Unified Theory: Phase Dynamics and Mass-Modulated Flat Spacetime Xuan, Junyou (Jax) Phase Dynamics Flat Spacetime 1PN Expansion PPN Parameters Quantum Tunneling Attosecond Delay <h3>Abstract / Description (Plain Text Version)</h3> <p><span>This work presents a non-geometric gravitational framework based on phase dynamics, redefining the cosmic background as an eternally flat 3D Euclidean space with a globally shared time parameter t. </span><span><span>Gravity is reinterpreted as the real-time modulation of the matter mass operator by a 4D energy density field (rho4). </span></span></p> <p>The paper provides rigorous mathematical validation through:</p> <p><span><strong><span>1PN Expansion</span></strong><span>: Deriving PPN parameters beta = 1 and gamma = 1, aligning with solar system observational constraints such as Mercury's perihelion precession. </span></span><span><span><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup></span></span></p> <p></p> <p> </p> <p><span><strong><span>Quantum Dynamics</span></strong><span>: A WKB-based derivation of the modified Dirac equation that predicts a non-zero attosecond-scale quantum tunneling delay (approximately 10^-18 seconds), matching modern experimental results. </span></span><span><span><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup><sup></sup></span></span></p> <p></p> <p> </p> <p><span><strong><span>Singularity Resolution</span></strong><span>: Introducing a Planck-scale regularization (epsilon) to ensure the well-posedness of field dynamics PDE, effectively eliminating black hole singularities. </span></span><span><span><sup></sup><sup></sup><sup></sup><sup></sup></span></span></p> <p></p> <p><span><span>This framework offers testable predictions that bridge the gap between gravitation and quantum phase transitions.</span></span></p> |
| title | Unified Theory: Phase Dynamics and Mass-Modulated Flat Spacetime |
| topic | Phase Dynamics Flat Spacetime 1PN Expansion PPN Parameters Quantum Tunneling Attosecond Delay |
| url | https://doi.org/10.5281/zenodo.18776636 |