Hints of noncold dark matter? Observational constraints on barotropic dark matter with a constant equation of state parameter
arXiv:2507.00478
Abstract
This study investigates the potential of a cosmological model termed DM, in which a cosmological constant play the role of dark energy and dark matter is barotropic and has a constant equation of state parameter (), to address the tension between early- and late- universe observations. By incorporating the latest cosmological datasets -- including Planck Cosmic Microwave Background (CMB), Baryon Acoustic Oscillation (BAO), Ia supernovae (SNe Ia), Redshift Space Distortions (RSD), and weak lensing (WL) -- we constrain the DM compared to CDM. Our analysis reveals a marginal preference for a non-zero ( at 95\% confidence level) when combining CMB, SDSS BAO, SNe Ia, RSD, and WL data, and a marginal preference for a non-zero ( at 95\% confidence level) when combining CMB, DESI Y1 BAO, SNe Ia, RSD, and WL data. In addition, we find that, compared to CDM, DM can alleviate the tension from to . Furthermore, we find that, for CMB+SDSS+PP+RSD+WL datasets, the DM model is close to being positively preferred over the CDM model.
12 pages, 5 figures