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A timing constraint on the (total) mass of the Large Magellanic Cloud

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arxiv 1507.03594 v2 pith:W6XY47FW submitted 2015-07-13 astro-ph.GA

classification astro-ph.GA
keywords massodottimesmilkyandromedaderivedestimatesgroup
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abstract

This paper explores the effect of the LMC on the mass estimates obtained from the timing argument. We show that accounting for the presence of the LMC systematically lowers the Local Group mass ($M_{\rm LG}$) derived from the relative motion of the Milky Way--Andromeda pair. Motivated by this result we apply a Bayesian technique devised by Pe\~narrubia et al. (2014) to simultaneously fit (i) distances and velocities of galaxies within 3~Mpc and (ii) the relative motion between the Milky Way and Andromeda derived from HST observations, with the LMC mass ($M_{\rm LMC}$) as a free parameter. Our analysis returns a Local Group mass $M_{\rm LG}=2.64^{+0.42}_{-0.38}\times 10^{12}M_\odot$ at a 68\% confidence level. The masses of the Milky Way, $M_{\rm MW}=1.04_{-0.23}^{+0.26}\times 10^{12}M_\odot$, and Andromeda, $M_{\rm M31}=1.33_{-0.33}^{+0.39}\times 10^{12}M_\odot$, are consistent with previous estimates that neglect the impact of the LMC on the observed Hubble flow. We find a (total) LMC mass $M_{\rm LMC}=0.25_{-0.08}^{+0.09}\times 10^{12}M_\odot$, which is indicative of an extended dark matter halo and supports the scenario where this galaxy is just past its first pericentric approach. Consequently, these results suggest that the LMC may induce significant perturbations on the Galactic potential.

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Cited by 2 Pith papers

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  1. Evidence for the First Globular Cluster Stellar Stream beyond the Milky Way

    astro-ph.GA 2026-08 conditional novelty 7.0 of 10

    The paper presents evidence that a 72 pc wide, 2 kpc long tidal feature in HST and CFHT images of UGC9050-Dw1 is an extragalactic globular cluster stream, and uses it to infer a massive dark matter halo.

  2. LMC-induced Perturbations in the Milky Way Halo II: Bridging Field-level Inference and Summary-level Simulation-Based Inference

    astro-ph.GA 2026-07 conditional novelty 6.0 of 10

    A field-level flow-matching likelihood shows the raw 6D halo phase-space distribution carries 2.5-9.9x more MW-LMC parameter information than velocity moments; adding BFE+MOPED summaries recovers much of this gap.

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