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Dark-matter central density, annihilation J-factor and decay D-factor of the Fornax, Sculptor and Leo I dwarf spheroidal galaxies
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The dwarf spheroidal galaxies (dSphs) satellites of the Milky Way (MW) are nearby astrophysical laboratories to study the nature of dark matter (DM). We present some properties of the DM halos of the three classical dSphs Fornax, Sculptor and Leo I, obtained using dynamical models based on distribution functions depending on the action integrals. In particular, we report accurate estimates of their central DM density rho150 (measured at a distance of 150 pc from the galaxy centre), which is relevant for galaxy formation studies and for models of self-interacting DM, and their DM annihilation J-factor and decay D-factor, which are key tools for indirect DM detection experiments. Among these three galaxies, Fornax has the highest J- and D- factors (but the lowest rho150), while Leo I has the highest rho150 (but the lowest J- and D- factors).
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Cited by 2 Pith papers
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Leo I: the classical dwarf spheroidal galaxy with the highest dark-matter density
New analysis of Leo I's stellar motions yields a central dark matter density at 150 pc that is the highest among Milky Way dwarf spheroidals, with a cored inner profile.
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Chemo-dynamics of the stellar component of the Sculptor dwarf galaxy II: dynamical properties and dark matter halo density
Sculptor's dark matter halo is inferred to have a shallow central density slope (0.39) and to be inconsistent with a standard NFW cusp at about 3 sigma, from a distribution-function fit to 1,339 stars.
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