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New cosmological constraints on the evolution of dark matter energy density

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arxiv 2505.09879 v2 pith:R5X2JNZW submitted 2025-05-15 astro-ph.CO gr-qc

classification astro-ph.COgr-qc
keywords darkdataenergydeviationmatterparametervarepsilonconstraints
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We constrain the evolution of dark matter energy density over time, specifically focusing on deviation from the standard model represented by the equation $\rho_{m}\propto(1+z)^{3-\varepsilon}$, where $\varepsilon$ is a constant parameter. Utilizing a diverse array of observational datasets, including baryon acoustic oscillations (BAO) data from the first release of the Dark Energy Spectroscopic Instrument (DESI), distance priors derived from cosmic microwave background (CMB) observations by the Planck satellite, Hubble rate data obtained through the cosmic chronometers (CC) method, type Ia supernova (SNIa) data from the Panthon sample, and the data from the redshift space distortion (RSD) measurements ($f\sigma_8$), we derive stringent constraints on the deviation parameter. We find that for the model under consideration, the deviation parameter is constrained to be $\varepsilon = -0.0073^{+0.0029}_{-0.0033}$, indicating a deviation of approximately $2.4\sigma$ from the scenario where dark matter and vacuum dark energy do not interact. When compared with previous studies and alternative analyses, our findings provide corroborative evidence for an interaction between dark matter and vacuum dark energy, particularly in light of the release of BAO data from DESI.

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Cited by 6 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Exploring non-cold dark matter in a scenario of dynamical dark energy with DESI DR2 data

    astro-ph.CO 2025-07 conditional novelty 5.0 of 10

    Using DESI DR2, Planck, and supernova data, a nonzero dark matter equation of state is preferred at 2.8 to 3.3 sigma only when dark energy is assumed to have a constant equation of state.

  2. Cosmological Constraints on the DGP Model in light of DESI DR2 2025 Data

    astro-ph.CO 2026-07 accept novelty 4.0 of 10

    DESI DR2 combined with CC, SNIa and CMB priors give H0≈63–64 km s−1 Mpc−1 for flat/non-flat DGP and ΔAIC>100 against ΛCDM, strongly disfavoring the model.

  3. Alleviating the $H_0$ tension through the interacting dark energy model from quantum gravitational field theory in light of DESI DR2

    astro-ph.CO 2025-10 conditional novelty 4.0 of 10

    With DESI DR2 BAO plus CMB and a SH0ES prior, the two-parameter eeΛCDM model gives δΛ=-0.41±0.14 and H0=71.9±1.0, easing the Hubble tension to 0.8σ, but SN datasets erase the signal.

  4. Dark Energy Is Not That Into You: Variable Couplings after DESI DR2 BAO

    astro-ph.CO 2025-08 conditional novelty 4.0 of 10

    With DESI DR2 data, one interacting dark sector model with a time-dependent coupling shows a nonzero coupling at more than 95% CL, but Bayesian evidence still favors Lambda-CDM.

  5. Averaging Dynamics of Scalar Field-Matter Interacting Models in Anisotropic Universes: The Locally Rotationally Symmetric Bianchi I Spacetime

    gr-qc 2025-08 reject novelty 4.0 of 10

    The authors apply averaging methods to classify late-time attractors for nine interacting dark sector models in Bianchi I cosmology, but the general interaction formula does not match the specific models analyzed.

  6. Cosmological preference for a positive neutrino mass at 2.7$\sigma$: A joint analysis of DESI DR2, DESY5, and DESY1 data

    astro-ph.CO 2025-07 conditional novelty 4.0 of 10

    A joint fit of DESI DR2, CMB, DESY5 and DESY1 data gives total neutrino mass 0.098 (+0.016, -0.037) eV, a 2.7 sigma preference for positive mass in the w0waCDM model.

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