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

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Hauptverfasser: Cavieres, Manuel, Chanamé, Julio, Navarrete, Camila, Ordenes-Briceño, Yasna, Garavito-Camargo, Nicolás, Besla, Gurtina, Hempel, Maren, Vivas, Katherina, Gómez, Facundo
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Veröffentlicht: 2024
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author Cavieres, Manuel
Chanamé, Julio
Navarrete, Camila
Ordenes-Briceño, Yasna
Garavito-Camargo, Nicolás
Besla, Gurtina
Hempel, Maren
Vivas, Katherina
Gómez, Facundo
author_facet Cavieres, Manuel
Chanamé, Julio
Navarrete, Camila
Ordenes-Briceño, Yasna
Garavito-Camargo, Nicolás
Besla, Gurtina
Hempel, Maren
Vivas, Katherina
Gómez, Facundo
contents 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.
format Preprint
id arxiv_https___arxiv_org_abs_2410_00114
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The distant Milky Way halo from the Southern hemisphere: Characterization of the LMC-induced dynamical-friction wake
Cavieres, Manuel
Chanamé, Julio
Navarrete, Camila
Ordenes-Briceño, Yasna
Garavito-Camargo, Nicolás
Besla, Gurtina
Hempel, Maren
Vivas, Katherina
Gómez, Facundo
Astrophysics of Galaxies
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.
title The distant Milky Way halo from the Southern hemisphere: Characterization of the LMC-induced dynamical-friction wake
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2410.00114