The Local Group's mass: probably no more than the sum of its parts
arXiv:2210.07250 · doi:10.1093/mnras/stad883
Abstract
The total mass of the Local Group (LG) and the masses of its primary constituents, the Milky Way and M31, are important anchors for several cosmological questions. In recent years, independent measurements have consistently yielded halo masses close to for the MW, and for M31, while estimates derived from the pair's kinematics via the `timing argument' have yielded a combined mass of around . Here, we analyse the extremely large Uchuu simulation to constrain the mass of the Local Group and its two most massive members. First, we demonstrate the importance of selecting LG analogues whose kinematics are dominated by mutual interactions to a similar extent as the LG. Adopting the observed separation and radial velocity, we obtain a weighted posterior of kms for the uncertain transverse velocity. Via Gaussian process regression, we infer a total mass of , significantly below the timing argument prediction. Importantly, we show that the remaining uncertainty is not rooted in the analysis or observational errors, but in the irreducible scatter in the kinematics-mass relation. We further find a mass for the less massive halo of and for the more massive halo of , consistent with independent measurements of the masses of MW and M31, respectively. Incorporating the mass of the MW as an additional prior allows us to further constrain all measurements and determine that the MW is very likely to be the lower mass object of the two.
15 pages, submitted to MNRAS. Full source code provided, comments are welcome
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