paper

Constraining Dark Matter -- Dark Radiation interactions with CMB, BAO, and Lyman-

arXiv:1907.01496 · doi:10.1088/1475-7516/2019/10/055

Abstract

Several interesting Dark Matter (DM) models invoke a dark sector leading to two types of relic particles, possibly interacting with each other: non-relativistic DM, and relativistic Dark Radiation (DR). These models have interesting consequences for cosmological observables, and could in principle solve problems like the small-scale cold DM crisis, Hubble tension, and/or low value. Their cosmological behaviour is captured by the ETHOS parametrisation, which includes a DR-DM scattering rate scaling like a power-law of the temperature, . Scenarios with , , or can easily be realised in concrete dark sector set-ups. Here we update constraints on these three scenarios using recent CMB, BAO, and high-resolution Lyman- data. We introduce a new Lyman- likelihood that is applicable to a wide range of cosmological models with a suppression of the matter power spectrum on small scales. For and , we find that Lyman- data strengthen the CMB+BAO bounds on the DM-DR interaction rate by many orders of magnitude. However, models offering a possible solution to the missing satellite problem are still compatible with our new bounds. For , high-resolution Lyman- data bring no stronger constraints on the interaction rate than CMB+BAO data, except for extremely small values of the DR density. Using CMB+BAO data and a theory-motivated prior on the minimal density of DR, we find that the model can reduce the Hubble tension from to , while simultaneously accommodating smaller values of the and parameters hinted by cosmic shear data.

32 pages, 6 figures, 4 tables. Comments are welcome

Constraining Dark Matter -- Dark Radiation interactions with CMB, BAO, and Lyman-$α$ · wovepaper