Tension in the Context of Dark Matter-Baryon Scattering
arXiv:2301.08260 · doi:10.3847/2041-8213/acdb63
Abstract
We explore an interacting dark matter (IDM) model that allows for a fraction of dark matter (DM) to undergo velocity-independent scattering with baryons. In this scenario, structure on small scales is suppressed relative to the cold DM scenario. Using the effective field theory of large-scale structure, we perform the first systematic analysis of BOSS full-shape galaxy clustering data for the IDM scenario, and we find that this model alleviates the tension between large-scale structure and Planck data. Adding the prior from DES to our analysis further leads to a mild preference for a non-vanishing DM-baryon scattering cross-section, assuming of DM is interacting and has a particle mass of 1 MeV. This result produces a modest % suppression of the linear power at /Mpc, consistent with other small-scale structure observations. Similar scale-dependent power suppression was previously shown to have the potential to resolve tension between cosmological data sets. The validity of the specific IDM model explored here will be critically tested with upcoming galaxy surveys at the interaction level needed to alleviate the tension.
19 pages, 9 figures. v2: minor wording changes + reformatting. v3: minor wording changes