paper

Figure Rotation of IllustrisTNG Halos

arXiv:2308.16253

Abstract

We use the TNG50 and TNG50 dark matter (DM)-only simulations from the IllustrisTNG simulation suite to conduct an updated survey of halo figure rotation in the presence of baryons. We develop a novel methodology to detect coherent figure rotation about an arbitrary axis and for arbitrary durations and apply it to a catalog of 1,577 DM halos from the DM-only run and 1,396 DM halos from the DM+baryons (DM+B) run that are free of major mergers. Figure rotation was detected in of DM-only halos and of the DM+B halos. The pattern speeds of rotations lasting Gyr were log-normally distributed with medians of km s kpc for DM-only in agreement with past results, but higher at km s kpc in the DM+B halos. We find that rotation axes are typically aligned with the halo minor or major axis, in of DM-only halos and in of DM+B halos. The remaining rotation axes were not strongly aligned with any principal axis but typically lay in the plane containing the halo minor and major axes. Longer-lived rotations showed greater alignment with the halo minor axis in both simulations. Our results show that in the presence of baryons, figure rotation is marginally less common, shorter-lived, faster, and better aligned with the minor axis than in DM-only halos. This updated understanding will be consequential for future efforts to constrain figure rotation in the Milky Way dark halo using the morphology and kinematics of tidal streams.

18 pages, 11 figures, 1 table