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| Format: | Recurso digital |
| Language: | English |
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2025
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| Online Access: | https://doi.org/10.5281/zenodo.17613859 |
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| _version_ | 1866901142521249792 |
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| author | ROJAS PEROZO |
| author_facet | ROJAS PEROZO |
| contents | <p>Description:<br>This work presents the MJP–CBOS framework, a unified curvature-triggered mechanism for the generation of both dark matter and an effective dark-energy component inside rotating (Kerr) black holes. In regions of extreme spacetime curvature, baryonic matter couples to a dark fermion χ through the activation function F(K), defined over the Kretschmann scalar. In Kerr geometries this process is amplified by the spin parameter a*, producing a curvature-driven conversion channel and a Hawking-driven dark-sector emission channel.</p> <p>The model predicts the observed dark-matter abundance when primordial black holes form with spins in the range a* ≈ 0.78–0.87. The same curvature physics generates a vacuum-like CBOS term that behaves as an emergent cosmological constant, contributing naturally to the dark-energy density. This establishes a unified and falsifiable gravitational origin for both Ωχ and ΩΛ.</p> <p>This document constitutes version v1.1 of the preprint.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_17613859 |
| institution | Zenodo |
| language | eng |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | A Curvature-Triggered Mechanism for Dark Matter Production Inside Kerr Black Holes (MJP–CBOS Framework) ROJAS PEROZO Dark matter DARK ENER KERR BLACK HOLES PRIMORDIAL BLACK HOLES DARK ENERGY CURVATURE INDUCED PHYSICS KRETSCHMANN SCALAR QUANTUM GRAVITY COSMOLOGY HAWKING RADIATION SPIN PARAMETER MODIFIED GRAVITY EARLY UNIVERSE <p>Description:<br>This work presents the MJP–CBOS framework, a unified curvature-triggered mechanism for the generation of both dark matter and an effective dark-energy component inside rotating (Kerr) black holes. In regions of extreme spacetime curvature, baryonic matter couples to a dark fermion χ through the activation function F(K), defined over the Kretschmann scalar. In Kerr geometries this process is amplified by the spin parameter a*, producing a curvature-driven conversion channel and a Hawking-driven dark-sector emission channel.</p> <p>The model predicts the observed dark-matter abundance when primordial black holes form with spins in the range a* ≈ 0.78–0.87. The same curvature physics generates a vacuum-like CBOS term that behaves as an emergent cosmological constant, contributing naturally to the dark-energy density. This establishes a unified and falsifiable gravitational origin for both Ωχ and ΩΛ.</p> <p>This document constitutes version v1.1 of the preprint.</p> |
| title | A Curvature-Triggered Mechanism for Dark Matter Production Inside Kerr Black Holes (MJP–CBOS Framework) |
| topic | Dark matter DARK ENER KERR BLACK HOLES PRIMORDIAL BLACK HOLES DARK ENERGY CURVATURE INDUCED PHYSICS KRETSCHMANN SCALAR QUANTUM GRAVITY COSMOLOGY HAWKING RADIATION SPIN PARAMETER MODIFIED GRAVITY EARLY UNIVERSE |
| url | https://doi.org/10.5281/zenodo.17613859 |