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Dark matter annihilation radiation in hydrodynamic simulations of Milky Way haloes

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arxiv 1509.02166 v3 pith:55T5EAG4 submitted 2015-09-07 astro-ph.CO astro-ph.GAhep-ph

Dark matter annihilation radiation in hydrodynamic simulations of Milky Way haloes

classification astro-ph.CO astro-ph.GAhep-ph
keywords darkmatterannihilationgalaxieshalohalosradiationcentre
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We obtain predictions for the properties of cold dark matter annihilation radiation using high resolution hydrodynamic zoom-in cosmological simulations of Milky Way-like galaxies (APOSTLE project) carried out as part of the "Evolution and Assembly of GaLaxies and their Environments" (EAGLE) programme. Galactic halos in the simulation have significantly different properties from those assumed in the "standard halo model" often used in dark matter detection studies. The formation of the galaxy causes a contraction of the dark matter halo, whose density profile develops a steeper slope than the Navarro-Frenk-White (NFW) profile between $r\approx1.5$ kpc and $r\approx10$ kpc. At smaller radii, $r\lesssim1.5$ kpc, the halos develop a flatter than NFW slope. This unexpected feature may be specific to our particular choice of subgrid physics model but nevertheless the dark matter density profiles agree within 30% as the mass resolution is increased by a factor 150. The inner regions of the halos are almost perfectly spherical (axis ratios $b/a > 0.97$ within $r=1$ kpc) and there is no offset larger than 45 pc between the centre of the stellar distribution and the centre of the dark halo. The morphology of the predicted dark matter annihilation radiation signal is in broad agreement with $\gamma$-ray observations at large Galactic latitudes ($b\gtrsim3^\circ$). At smaller angles, the inferred signal in one of our four galaxies is similar to that which is observed but it is significantly weaker in the other three.

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Cited by 1 Pith paper

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  1. Stellar-like Galactic center excess challenges particle dark matter

    hep-ph 2025-11 conditional novelty 6.0

    A mixed stellar-bulge and dark-matter fit to Fermi-LAT Galactic Center data yields upper limits on the annihilation cross section that reach the thermal relic line for masses ≲300 GeV under a contracted NFW halo profile.