Estimation of the masses in the Local Group by Gradient Boosted Decision Trees
arXiv:2204.03334 · doi:10.1093/mnras/stac897
Abstract
Our goal is to estimate the mass of the Local Group (LG) and the individual masses of its primary galaxies, the M31 and the Milky Way (MW). We do this by means of a supervised machine learning algorithm, the gradient boosted decision trees (GBDT) and using the observed distance and relative velocity of the two as input parameters. The GBDT is applied to a sample of 2148 mock LGs drawn from a set of 5 dark matter (DM)-only simulations, ran within the standard CDM\ cosmological model. The selection of the mock LGs is guided by a LG model, which defines such objects. The role of the observational uncertainties of the input parameters is gauged by applying the model to an ensemble of mock LGs pairs whose observables are these input parameters perturbed by their corresponding observational errors. Finally the observational data of the actual LG is used to infer its relevant masses. Our main results are the sum and the individual masses of the MW and M31: , and (corresponding to the median and the 1st and 3rd quartiles). The ratio of the masses is , where by convention the M31 is defined here to be the more massive of the two halos.
Accepted for publication in MNRAS
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- Revisiting the Proper Motions of M31 and M33 Using Massive Supergiant Stars with Gaia DR3
- Timing Mass of the Local Group
- The Milky Way and M31 Orbital History: Did the Local Group evolve in isolation?
- Dwarf Galaxy Number Counts within 25 Mpc: Predictions from Local Group Analogues in TNG50