Bending waves excited by irregular gas inflow along warps
arXiv:2203.03741 · doi:10.1093/mnras/stac606
Abstract
Gaia has revealed clear evidence of bending waves in the vertical kinematics of stars in the Solar Neighbourhood. We study bending waves in two simulations, one warped, with the warp due to misaligned gas inflow, and the other unwarped. We find slow, retrograde bending waves in both models, with the ones in the warped model having larger amplitudes. We also find fast, prograde bending waves. Prograde bending waves in the unwarped model are very weak, in agreement with the expectation that these waves should decay on short, ~ crossing, timescales, due to strong winding. However, prograde bending waves are much stronger for the duration of the warped model, pointing to irregular gas inflow along the warp as a continuous source of excitation. We demonstrate that large amplitude bending waves that propagate through the Solar Neighbourhood give rise to a correlation between the mean vertical velocity and the angular momentum, with a slope consistent with that found by Gaia. The bending waves affect populations of all ages, but the sharpest features are found in the young populations, hinting that short wavelength waves are not supported by the older, kinematically hotter, populations. Our results demonstrate the importance of misaligned gas accretion as a recurrent source of vertical perturbations of disc galaxies, including in the Milky Way.
21 pages, 20 figures; Published on MNRAS
References in corpus (13)
- The Gaia mission
- Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- The Vertical Structure of the Outer Milky Way HI Disk
- Cold Dark Matter Substructure and Galactic Disks II: Dynamical Effects of Hierarchical Satellite Accretion
- An intuitive 3D map of the Galactic warp's precession traced by classical Cepheids
- Radial and vertical flows induced by galactic spiral arms: likely contributors to our "wobbly Galaxy''
- How to get cool in the heat: comparing analytic models of hot, cold, and cooling gas in haloes and galaxies with EAGLE
- Spontaneous generation of bending waves in isolated Milky Way-like discs
- Vertical velocities from proper motions of red clump giants
- The relative efficiencies of bars and clumps in driving disc stars to retrograde motion
- The tilting rate of the Milky Way's disc
- How stars formed in warps settle into (and contaminate) thick discs