Pre-V11 Synthesis: The Elastic Universe
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2025
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| _version_ | 1866901796093427712 |
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| author | Olesen, Fabian |
| author_facet | Olesen, Fabian |
| contents | <p>We present a unified narrative of the Planck-Bound Unified Framework (PBUF) by synthesizing all PBUF preprints to date. In this elastic-vacuum cosmology the same small amplitude α≈0.0228 governs every phenomenon: cosmic acceleration, structure growth, and even particle physics asymmetries. All previous results cohere around a vacuum strain parameter α≈0.0228 (≈2.28%). Elastic Saturation showed that the vacuum stress Ωₛ(a) rises from 0 to this yield value, naturally driving late-time acceleration. Acceleration Onset derived the epoch when Ωₛ(a) overtakes matter, predicting without tuning. Multi-messenger studies demonstrate that all fields propagate at c to fantastically high precision, implying a vacuum stiffness ε₀ extremely close to unity. The Planck-bound analysis showed that spacetime “oscillators” saturate at Planck curvature, releasing only an α fraction of the huge vacuum energy. The Micro–Macro Bridge ties α to coherent quantum waves at the Planck scale. Even LHCb’s baryon CP-violation (≈2.45%) matches α. All these independent threads point to <strong>one elastic medium</strong>: an emergent vacuum with finite rigidity, whose strain energy α drives cosmic acceleration instead of Λ. In this view the dark-energy and σ₈ tensions are resolved physically, and the same ~2.3% scale appears everywhere as a possible fundamental ratio in nature.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_17685508 |
| institution | Zenodo |
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| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Pre-V11 Synthesis: The Elastic Universe Olesen, Fabian <p>We present a unified narrative of the Planck-Bound Unified Framework (PBUF) by synthesizing all PBUF preprints to date. In this elastic-vacuum cosmology the same small amplitude α≈0.0228 governs every phenomenon: cosmic acceleration, structure growth, and even particle physics asymmetries. All previous results cohere around a vacuum strain parameter α≈0.0228 (≈2.28%). Elastic Saturation showed that the vacuum stress Ωₛ(a) rises from 0 to this yield value, naturally driving late-time acceleration. Acceleration Onset derived the epoch when Ωₛ(a) overtakes matter, predicting without tuning. Multi-messenger studies demonstrate that all fields propagate at c to fantastically high precision, implying a vacuum stiffness ε₀ extremely close to unity. The Planck-bound analysis showed that spacetime “oscillators” saturate at Planck curvature, releasing only an α fraction of the huge vacuum energy. The Micro–Macro Bridge ties α to coherent quantum waves at the Planck scale. Even LHCb’s baryon CP-violation (≈2.45%) matches α. All these independent threads point to <strong>one elastic medium</strong>: an emergent vacuum with finite rigidity, whose strain energy α drives cosmic acceleration instead of Λ. In this view the dark-energy and σ₈ tensions are resolved physically, and the same ~2.3% scale appears everywhere as a possible fundamental ratio in nature.</p> |
| title | Pre-V11 Synthesis: The Elastic Universe |
| url | https://doi.org/10.5281/zenodo.17685508 |