English

Hunting for the Dark Matter Wake Induced by the Large Magellanic Cloud

Astrophysics of Galaxies 2019-10-16 v2 Cosmology and Nongalactic Astrophysics

Abstract

Satellite galaxies are predicted to generate gravitational density wakes as they orbit within the dark matter (DM) halos of their hosts, causing their orbits to decay over time. The recent infall of the Milky Way's (MW) most massive satellite galaxy, the Large Magellanic Cloud (LMC), affords us the unique opportunity to study this process in action. In this work, we present high-resolution (mdm=4×104Mm_{dm} = 4 \times 10^4 M_{\odot} ) N-body simulations of the MW-LMC interaction over the past 2 Gyr. We quantify the impact of the LMC's passage on the density and kinematics of the MW's DM halo and the observability of these structures in the MW's stellar halo. The LMC is found to generate pronounced Local and Global wakes in both the DM and stellar halos, leads to both local overdensities and distinct kinematic patterns that should be observable with ongoing and future surveys. Specifically, the Global Wake will result in redshifted radial velocities of stars in the North and blueshifts in the South, at distances larger than 45 kpc. The Local Wake traces the orbital path of the LMC through the halo (50-200 kpc), resulting in a stellar overdensity with a distinct, tangential kinematic pattern that persists to the present day. The detection of the MW's halo response will constrain: the infall mass of the LMC and its orbital trajectory, the mass of the MW, and it may inform us about the nature of the dark matter particle itself.

Keywords

Cite

@article{arxiv.1902.05089,
  title  = {Hunting for the Dark Matter Wake Induced by the Large Magellanic Cloud},
  author = {Nicolas Garavito-Camargo and Gurtina Besla and Chervin F. P Laporte and Kathryn V. Johnston and Facundo A. Gómez and Laura L. Watkins},
  journal= {arXiv preprint arXiv:1902.05089},
  year   = {2019}
}

Comments

41 pages, 27 figures. Accepted to ApJ. Some terminology was changed. High-resolution images and figures can be found at https://bit.ly/2S25YzC