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Research PaperResearchia:202609.17012

Probing Non-Cold Dark Matter with Modified Emergent Dark Energy

Jun-Chao Wang

Abstract

In the standard $Λ$CDM cosmology, dark matter is assumed to be a pressureless cold fluid with $w_{\rm dm}=0$. However, the microscopic nature of dark matter remains unknown, and whether its equation-of-state parameter strictly vanishes deserves observational scrutiny. In this work, we introduce a free dark matter equation-of-state parameter $w_{\rm dm}$ within the Modified Emergent Dark Energy (MEDE) framework, constructing the MEDE+$w_{\rm dm}$ model. We systematically derive its background evo...

Submitted: September 17, 2026Subjects: Physics; Physics

Description / Details

In the standard ΛΛCDM cosmology, dark matter is assumed to be a pressureless cold fluid with wdm=0w_{\rm dm}=0. However, the microscopic nature of dark matter remains unknown, and whether its equation-of-state parameter strictly vanishes deserves observational scrutiny. In this work, we introduce a free dark matter equation-of-state parameter wdmw_{\rm dm} within the Modified Emergent Dark Energy (MEDE) framework, constructing the MEDE+wdmw_{\rm dm} model. We systematically derive its background evolution and linear perturbation equations, and constrain the model parameters using Planck 2018 cosmic microwave background (CMB), DESI DR2 baryon acoustic oscillation (BAO), and three independent Type Ia supernova datasets: Pantheon+, Union3, and DES5YR. Using the CMB + BAO + DES5YR combination, we find a preference for a positive dark matter equation of state, wdm=0.00128±0.00044w_{\rm dm}=0.00128\pm0.00044, together with a 3σσ level preference for quintessence-like dark energy evolution, α=0.66±0.22α=-0.66\pm0.22. When the local H0H_0 prior is included, the constraint on wdmw_{\rm dm} remains essentially unchanged, whereas αα shifts toward the ΛΛCDM limit, yielding α=0.18±0.18α=-0.18\pm0.18. Bayesian model comparison favors ΛΛCDM over MEDE+wdmw_{\rm dm}, although the preference is reduced to the weak level after including the local H0H_0 prior. Overall, current observations exhibit a 2.6σ2.6σ--3σ preference for a nonzero wdmw_{\rm dm} at the parameter-posterior level, but this indication does not yet constitute a robust detection of non-cold dark matter.


Source: arXiv:2609.16068v1 - http://arxiv.org/abs/2609.16068v1 PDF: https://arxiv.org/pdf/2609.16068v1 Original Link: http://arxiv.org/abs/2609.16068v1

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Date:
Sep 17, 2026
Topic:
Physics
Area:
Physics
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