Resolving local and global kinematic signatures of satellite mergers with billion particle simulations

Author:

Hunt Jason A S1ORCID,Stelea Ioana A2,Johnston Kathryn V12,Gandhi Suroor S3,Laporte Chervin F P45ORCID,Bédorf Jeroen6ORCID

Affiliation:

1. Center for Computational Astrophysics, Flatiron Institute, 162 5th Avenue, New York City, NY 10010, USA

2. Department of Astronomy, Columbia University, New York, NY 10027, USA

3. Center for Cosmology and Particle Physics, Department of Physics, New York University, 726 Broadway, New York, NY 10003, USA

4. Institut de Ciències del Cosmos (ICCUB), Universitat de Barcelona (IEEC-UB), Martí i Franquès 1, E-08028 Barcelona, Spain

5. Kavli Institute for the Physics and Mathematics of the Universe (WPI), The University of Tokyo Institutes for Advanced Study (UTIAS), The University of Tokyo, Chiba 277-8583, Japan

6. Leiden Observatory, Leiden University, P.O. Box 9513, NL-2300 RA Leiden, the Netherlands

Abstract

ABSTRACT In this work, we present two new ∼109 particle self-consistent simulations of the merger of a Sagittarius-like dwarf galaxy with a Milky Way (MW)-like disc galaxy. One model is a violent merger creating a thick disc, and a Gaia–Enceladus/Sausage-like remnant. The other is a highly stable disc which we use to illustrate how the improved phase space resolution allows us to better examine the formation and evolution of structures that have been observed in small, local volumes in the MW, such as the z−vz phase spiral and clustering in the vR−vϕ plane when compared to previous works. The local z−vz phase spirals are clearly linked to the global asymmetry across the disc: we find both 2-armed and 1-armed phase spirals, which are related to breathing and bending behaviours, respectively. Hercules-like moving groups are common, clustered in vR−vϕ in local data samples in the simulation. These groups migrate outwards from the inner galaxy, matching observed metallicity trends even in the absence of a galactic bar. We currently release the best-fitting ‘present-day’ merger snapshots along with the unperturbed galaxies for comparison.

Funder

Simons Foundation

National Science Foundation

European Research Council

Horizon 2020

MEXT

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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1. Linear operator theory of phase mixing;Monthly Notices of the Royal Astronomical Society;2024-07-23

2. Radial and azimuthal gradients of the moving groups in Gaia DR3: The slow and fast bar degeneracy problem;Astronomy & Astrophysics;2024-05-31

3. The debris of the ‘last major merger’ is dynamically young;Monthly Notices of the Royal Astronomical Society;2024-05-13

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