The Orion Framework III: Cosmology via Coherence Constants

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Main Author: Graham, John
Format: Recurso digital
Published: Zenodo 2025
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author Graham, John
author_facet Graham, John
contents <p>Building on Papers I and II, we apply the Orion coherence framework to cosmology.<br>We show that dark energy emerges naturally as coherence leakage across the de Sitter floor, modeled by a leakage function C(z) = 1/(1+αΘ(z)) with α ≈ 0.7.<br>We further demonstrate that dark matter arises from coherence freeze, parameterized as f(z) ∝ (1+z)^p with p ≈ –1.035, yielding Ω_m ≈ 0.28 today.<br>At high redshift, Orion reduces to ΛCDM, ensuring consistency with the CMB, while at low redshift it predicts suppressed matter-to-dark-energy ratio and clustering evolution consistent with current tensions in S₈ and H₀.<br>Together, these results unify dark energy and dark matter as coherence bookkeeping effects, requiring no cosmological constant or exotic new particles.<br>Orion thus provides a coherence-based cosmology with falsifiable predictions testable by DESI, Rubin, and Euclid.</p> <p><strong>Version 2 (September 2025):</strong><br>This update clarifies the status of the cosmological extension.</p> <ul> <li> <p>Added explicit disclaimer that the framework is preliminary and phenomenological.</p> </li> <li> <p>Parameters (α ≈ 0.7, p ≈ –1.035) are presented as provisional fits rather than constants.</p> </li> <li> <p>Added closing caveat that the current formulation does not replace ΛCDM and requires a conserving dynamical model with full data testing.</p> </li> <li> <p>Overall, this version is transparent about limitations while preserving the motivating framework.</p> </li> <li>john@northernlights.co.nz</li> </ul>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17149080
institution Zenodo
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publishDate 2025
publisher Zenodo
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spellingShingle The Orion Framework III: Cosmology via Coherence Constants
Graham, John
Orion Framework
dark energy
dark matter
coherence constants
de Sitter floor
cosmology
ΛCDM tension
FRBs
<p>Building on Papers I and II, we apply the Orion coherence framework to cosmology.<br>We show that dark energy emerges naturally as coherence leakage across the de Sitter floor, modeled by a leakage function C(z) = 1/(1+αΘ(z)) with α ≈ 0.7.<br>We further demonstrate that dark matter arises from coherence freeze, parameterized as f(z) ∝ (1+z)^p with p ≈ –1.035, yielding Ω_m ≈ 0.28 today.<br>At high redshift, Orion reduces to ΛCDM, ensuring consistency with the CMB, while at low redshift it predicts suppressed matter-to-dark-energy ratio and clustering evolution consistent with current tensions in S₈ and H₀.<br>Together, these results unify dark energy and dark matter as coherence bookkeeping effects, requiring no cosmological constant or exotic new particles.<br>Orion thus provides a coherence-based cosmology with falsifiable predictions testable by DESI, Rubin, and Euclid.</p> <p><strong>Version 2 (September 2025):</strong><br>This update clarifies the status of the cosmological extension.</p> <ul> <li> <p>Added explicit disclaimer that the framework is preliminary and phenomenological.</p> </li> <li> <p>Parameters (α ≈ 0.7, p ≈ –1.035) are presented as provisional fits rather than constants.</p> </li> <li> <p>Added closing caveat that the current formulation does not replace ΛCDM and requires a conserving dynamical model with full data testing.</p> </li> <li> <p>Overall, this version is transparent about limitations while preserving the motivating framework.</p> </li> <li>john@northernlights.co.nz</li> </ul>
title The Orion Framework III: Cosmology via Coherence Constants
topic Orion Framework
dark energy
dark matter
coherence constants
de Sitter floor
cosmology
ΛCDM tension
FRBs
url https://doi.org/10.5281/zenodo.17149080