{ "id": "2201.02634", "version": "v1", "published": "2022-01-07T19:00:01.000Z", "updated": "2022-01-07T19:00:01.000Z", "title": "Flat spectrum radio quasars and BL Lacs dominate the anisotropy of the unresolved gamma-ray background", "authors": [ "Michael Korsmeier", "Elena Pinetti", "Michela Negro", "Marco Regis", "Nicolao Fornengo" ], "comment": "22 pages, 12 figures", "categories": [ "astro-ph.HE", "astro-ph.CO" ], "abstract": "We analyze the angular power spectrum (APS) of the unresolved gamma-ray background (UGRB) emission and combine it with the measured properties of the resolved gamma-ray sources of the \\Fermi-LAT 4FGL catalog. Our goals are to dissect the composition of the gamma-ray sky and to establish the relevance of different classes of source populations of active galactic nuclei in determining the observed size of the UGRB anisotropy, especially at low energies. We find that, under physical assumptions for the spectral energy dispersion, two populations are required to fit APS data, namely flat spectrum radio quasars (FSRQs) at low energies and BL Lacs (BLLs) at higher energies. The inferred luminosity functions agree well with the extrapolation of the FSRQ and BLL ones obtained from the 4FLG catalog. We use these luminosity functions to calculate the UGRB intensity from blazars, finding a contribution of 20\\% at 1GeV and 30\\% above 10 GeV. Finally, bounds on an additional gamma-ray emission due to annihilating dark matter are derived.", "revisions": [ { "version": "v1", "updated": "2022-01-07T19:00:01.000Z" } ], "analyses": { "keywords": [ "flat spectrum radio quasars", "unresolved gamma-ray background", "bl lacs dominate", "anisotropy", "low energies" ], "note": { "typesetting": "TeX", "pages": 22, "language": "en", "license": "arXiv", "status": "editable" } } }