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arXiv 2014-05-29 DOI 10.1093/mnras/stu1849 0 views

Milky Way mass constraints from the Galactic satellite gap

Cautun, Marius · Frenk, Carlos S. · van de Weygaert, Rien · Hellwing, Wojciech A. · Jones, Bernard J. T.

Original · EN

We use the distribution of maximum circular velocities, Vmax, of satellites in the Milky Way (MW) to constrain the virial mass, M₂₀₀, of the Galactic halo under an assumed prior of a ΛCDM universe. This is done by analysing the subhalo populations of a large sample of halos found in the Millennium II cosmological simulation. The observation that the MW has at most three subhalos with Vmax≥30 km/s requires a halo mass M₂₀₀≤1.4×10¹² M, while the existence of the Magellanic Clouds (assumed to have Vmax≥60 km/s) requires M₂₀₀≥1.0×10¹² M. The first of these conditions is necessary to avoid the "too-big-to-fail" problem highlighted by Boylan-Kolchin et al., while the second stems from the observation that massive satellites like the Magellanic Clouds are rare. When combining both requirements, we find that the MW halo mass must lie in the range 0.25 ≤ M₂₀₀/(10¹² M) ≤ 1.4 at 90% confidence. The gap in the abundance of Galactic satellites between 30 km/s≤ Vmax ≤ 60 km/s places our galaxy in the tail of the expected satellite distribution.

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