Geometric Unification of Dark Sectors: A Top-Down Cosmological Framework from the Fantasia Forest
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2025
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| _version_ | 1866902040714674176 |
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| author | Zheng, Xu Jie |
| author_facet | Zheng, Xu Jie |
| contents | <p> Addressing the fundamental limitations of the standard cosmological model (ΛCDM) in deriving initial conditions and core parameters from first principles, this paper proposes the “Fantasia Forest” meta-framework. This framework constructs a maternal structure beyond conventional spacetime from a top-down perspective.The core innovation lies in identifying the observable universe as a specific dynamical path (geodesic) within the “Fantasia Forest”—a pre-geometric, pre-physical configu<br>ration phase space of information. The laws of classical physics and spacetime itself emerge as low-energy effective phenomena.<br> This research builds a complete theoretical system through four key break throughs:</p> <p> 1. Utilizing symmetric monoidal higher groupoids as the ground state<br> of the “Fantasia Forest” and constructing the configuration phase space via fac<br>torization homology;</p> <p>2. Introducing the information geometric action principle to<br> elucidate the dynamical mechanism of cosmic evolution, validated for logical self<br>consistency through a toy model;</p> <p> 3. Proposing the concept of “spectral dimension”<br> to explain the spacetime emergence process, unifying dark matter and dark energy<br> as tidal effects (geodesic convergence and divergence, respectively) induced by the<br> curvature of the configuration space;</p> <p> 4. Formulating three falsifiable observational<br> predictions: an annual weak drift of the gravitational constant, anisotropic features<br> in dark matter distribution, and non-standard correlations among cosmological pa<br>rameters.<br> This framework provides a novel ontological perspective for interdisciplinary re<br>search in quantum gravity and cosmology, breaking through the inherent boundaries<br> of traditional bottom-up approaches. It offers a new direction with both theoretical<br> depth and experimental verifiability for solving core cosmological puzzles like dark<br> matter and dark energy.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_17788247 |
| institution | Zenodo |
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| publishDate | 2025 |
| publisher | Zenodo |
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| spellingShingle | Geometric Unification of Dark Sectors: A Top-Down Cosmological Framework from the Fantasia Forest Zheng, Xu Jie Quantum Gravity Cosmology Emergent Spacetime Information Geometry Higher Categories Factorization Homology Dark Energy Dark Matter Toy Model <p> Addressing the fundamental limitations of the standard cosmological model (ΛCDM) in deriving initial conditions and core parameters from first principles, this paper proposes the “Fantasia Forest” meta-framework. This framework constructs a maternal structure beyond conventional spacetime from a top-down perspective.The core innovation lies in identifying the observable universe as a specific dynamical path (geodesic) within the “Fantasia Forest”—a pre-geometric, pre-physical configu<br>ration phase space of information. The laws of classical physics and spacetime itself emerge as low-energy effective phenomena.<br> This research builds a complete theoretical system through four key break throughs:</p> <p> 1. Utilizing symmetric monoidal higher groupoids as the ground state<br> of the “Fantasia Forest” and constructing the configuration phase space via fac<br>torization homology;</p> <p>2. Introducing the information geometric action principle to<br> elucidate the dynamical mechanism of cosmic evolution, validated for logical self<br>consistency through a toy model;</p> <p> 3. Proposing the concept of “spectral dimension”<br> to explain the spacetime emergence process, unifying dark matter and dark energy<br> as tidal effects (geodesic convergence and divergence, respectively) induced by the<br> curvature of the configuration space;</p> <p> 4. Formulating three falsifiable observational<br> predictions: an annual weak drift of the gravitational constant, anisotropic features<br> in dark matter distribution, and non-standard correlations among cosmological pa<br>rameters.<br> This framework provides a novel ontological perspective for interdisciplinary re<br>search in quantum gravity and cosmology, breaking through the inherent boundaries<br> of traditional bottom-up approaches. It offers a new direction with both theoretical<br> depth and experimental verifiability for solving core cosmological puzzles like dark<br> matter and dark energy.</p> |
| title | Geometric Unification of Dark Sectors: A Top-Down Cosmological Framework from the Fantasia Forest |
| topic | Quantum Gravity Cosmology Emergent Spacetime Information Geometry Higher Categories Factorization Homology Dark Energy Dark Matter Toy Model |
| url | https://doi.org/10.5281/zenodo.17788247 |