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The distant Milky Way halo from the Southern hemisphere: Characterization of the LMC-induced dynamical-friction wake

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arxiv 2410.00114 v2 pith:RVRT3BJJ submitted 2024-09-30 astro-ph.GA

The distant Milky Way halo from the Southern hemisphere: Characterization of the LMC-induced dynamical-friction wake

classification astro-ph.GA
keywords halowakedensitycontrastdarkexpectedmatteroverdensity
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The infall of the Large Magellanic Cloud (LMC) into the Milky Way's halo impacts the distribution of stars and dark matter in our Galaxy. Mapping the observational consequences of this encounter can inform us about the properties of both galaxies, details of their interaction, and possibly distinguish between different dark matter models. N-body simulations predict a localized overdensity trailing the LMC's orbit both in baryonic and dark matter, known as the wake. We collected wide-field, deep near-infrared, and optical photometry using VIRCAM and DECam across four fields along the expected wake, covering the sky region expected to span most of its predicted density contrast. We identify over 400 stars comprising two different tracers - near main sequence turn-off stars and red giants - that map the halo between 60-100 kpc, deriving stellar halo densities as a function of sky position and Galactocentric radius. We detect (1) a break in the halo radial density profile at 70 kpc not seen in Northern halo studies, and (2) a clear halo overdensity starting also at 70 kpc, with density contrast increasing steadily toward the expected current location of the wake. If this overdensity is the LMC wake, its peak density contrast is as pronounced as the most massive LMC model considered. Contamination from unidentified substructures may bias our wake detections, so wider-area surveys with similar depth are needed for confirmation.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. 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

    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.

  2. Directional dark matter signatures of the Large Magellanic Cloud

    hep-ph 2026-06 unverdicted novelty 6.0

    Auriga simulations show the LMC induces azimuthal anisotropies in directional DM recoils that enhance discovery prospects relative to the Standard Halo Model.

  3. The Milky Way - Large Magellanic Cloud Interaction with Simulation Based Inference

    astro-ph.GA 2025-10 conditional novelty 5.0

    Simulation-based inference on outer-halo star velocities gives a Milky Way reflex speed of 26.4 km/s and an LMC enclosed mass of 9.2×10^10 solar masses within 50 kpc.