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Main Author: Zheng, yuliang
Format: Recurso digital
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Published: Zenodo 2026
Online Access:https://doi.org/10.5281/zenodo.18299823
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author Zheng, yuliang
author_facet Zheng, yuliang
contents <p dir="auto">The current standard cosmological model (ΛCDM) successfully describes cosmic acceleration and galactic rotation curves, yet the nature of dark energy and dark matter remains a major mystery. This paper, building on the relative density holographic gravity theory [1], proposes a particle-free unified explanation: sparse spacetime (low δ, volume-law entanglement entropy dominant) requires additional positive curvature compensation to maintain holographic information encoding consistency. This compensation mechanism produces net extra gravitational wells in galactic outskirts (gradient repulsion suppressed by slow gradients, curvature attraction dominant), simulating dark matter effects; on large scales with average sparsity, it dominates repulsion, driving cosmic acceleration (dark energy). This emergent explanation arises from the mismatch between area-law and volume-law entanglement entropy, requiring no additional fields or particles, relying solely on the original model's macroscopic density parameter δ and lowest-order modification to the Einstein field equations. Order-of-magnitude estimates show consistency with observed dark matter density (~10^{-24} g/cm³ in galactic halos) and cosmological constant (~10^{-122} ℓ_P^{-2}). The model retains the original theory's laboratory testability and provides new predictions for future astronomical observations (e.g., Euclid/JWST on void and cluster curvature distributions).</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18299823
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Holographic Relative Density as Unified Origin of Dark Matter and Dark Energy
Zheng, yuliang
<p dir="auto">The current standard cosmological model (ΛCDM) successfully describes cosmic acceleration and galactic rotation curves, yet the nature of dark energy and dark matter remains a major mystery. This paper, building on the relative density holographic gravity theory [1], proposes a particle-free unified explanation: sparse spacetime (low δ, volume-law entanglement entropy dominant) requires additional positive curvature compensation to maintain holographic information encoding consistency. This compensation mechanism produces net extra gravitational wells in galactic outskirts (gradient repulsion suppressed by slow gradients, curvature attraction dominant), simulating dark matter effects; on large scales with average sparsity, it dominates repulsion, driving cosmic acceleration (dark energy). This emergent explanation arises from the mismatch between area-law and volume-law entanglement entropy, requiring no additional fields or particles, relying solely on the original model's macroscopic density parameter δ and lowest-order modification to the Einstein field equations. Order-of-magnitude estimates show consistency with observed dark matter density (~10^{-24} g/cm³ in galactic halos) and cosmological constant (~10^{-122} ℓ_P^{-2}). The model retains the original theory's laboratory testability and provides new predictions for future astronomical observations (e.g., Euclid/JWST on void and cluster curvature distributions).</p>
title Holographic Relative Density as Unified Origin of Dark Matter and Dark Energy
url https://doi.org/10.5281/zenodo.18299823