Limits on Dark Matter Annihilation from the Shape of Radio Emission in M31
arXiv:2303.11354 · doi:10.1007/JHEP02(2024)029
Abstract
Well-motivated models of dark matter often result in a population of electrons and positrons within galaxies produced through dark matter annihilation -- usually in association with gamma rays. As they diffuse through galactic magnetic fields, these produce synchrotron radio emission. The intensity and morphology of this signal depends on the properties of the interstellar medium through which the propagate. Using observations of the Andromeda Galaxy (M31) to construct a model of the gas, magnetic fields, and starlight, we set constraints on dark matter annihilation to using the morphology of 3.6 cm radio emission. As the emission signal at the center of M31 is very sensitive to the diffusion coefficient and dark matter profile, we base our limits on the differential flux in the region between kpc from the center. We exclude annihilation cross sections cm/s in the mass range GeV, with a maximum sensitivity of cm/s at GeV. Though these limits are weaker than those found in previous studies of M31, they are robust to variations of the diffusion coefficient.
35 pages, 27 figures
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