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arXiv:1802.06788·v3·Cosmology and Nongalactic Astrophysics

Probing sub-GeV Dark Matter-Baryon Scattering with Cosmological Observables

Weishuang Linda Xu🇺🇸 · Cora Dvorkin🇺🇸 · Andrew Chael🇺🇸

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Abstract

We derive new limits on the elastic scattering cross-section between baryons and dark matter using Cosmic Microwave Background data from the Planck satellite and measurements of the Lyman-alpha forest flux power spectrum from the Sloan Digital Sky Survey. Our analysis addresses generic cross sections of the form , where v is the dark matter-baryon relative velocity, allowing for constraints on the cross section independent of specific particle physics models. We include high- polarization data from Planck in our analysis, improving over previous constraints. We apply a more careful treatment of dark matter thermal evolution than previously done, allowing us to extend our constraints down to dark matter masses of MeV. We show in this work that cosmological probes are complementary to current direct detection and astrophysical searches.

Comments: 15 pages, 12 figures. References added, additional data sets included. Updated results that include high-ell polarization data (for the negative-n scenarios) due to a corrupted file

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