Impact of Cosmological Satellites on Stellar Discs: Dissecting One Satellite at a Time
arXiv:1709.06107 · doi:10.1093/mnras/sty1183
Abstract
Within the standard hierarchical structure formation scenario, Milky Way-mass dark matter haloes have hundreds of dark matter subhaloes with mass . Over the lifetime of a galactic disc a fraction of these may pass close to the central region and interact with the disc. We extract the properties of subhaloes, such as their mass and trajectories, from a realistic cosmological simulation to study their potential effect on stellar discs. We find that massive subhalo impacts can generate disc heating, rings, bars, warps, lopsidedness as wells as spiral structures in the disc. Specifically, strong counter-rotating single-armed spiral structures form each time a massive subhalo passes through the disc. Such single-armed spirals wind up relatively quickly (over Gyrs) and are generally followed by co-rotating two-armed spiral structures that both develop and wind up more slowly. In our simulations self-gravity in the disc is not very strong and these spiral structures are found to be kinematic density waves. We demonstrate that there is a clear link between each spiral mode in the disc and a given subhalo that caused it, and by changing the mass of the subhalo we can modulate the strength of the spirals. Furthermore, we find that the majority of subhaloes interact with the disc impulsively, such that the strength of spirals generated by subhaloes is proportional to the total torque they exert. We conclude that only a handful of encounters with massive subhaloes is sufficient for re-generating and sustaining spiral structures in discs over their entire lifetime.
21 pages, 15 figures. MNRAS accepted
References in corpus (9)
- Beasts of the Southern Wild: Discovery of nine Ultra Faint satellites in the vicinity of the Magellanic Clouds
- Hundreds of Milky Way Satellites? Luminosity Bias in the Satellite Luminosity Function
- A fitting formula for the merger timescale of galaxies in hierarchical clustering
- Cold Dark Matter Substructure and Galactic Disks II: Dynamical Effects of Hierarchical Satellite Accretion
- Is the Milky Way ringing? The hunt for high velocity streams
- Transient spirals as superposed instabilities
- Warps and waves in the stellar discs of the Auriga cosmological simulations
- Substructure and galaxy formation in the Copernicus Complexio warm dark matter simulations
- Gas and stellar spiral structures in tidally perturbed disc galaxies
Cited by in corpus (7)
- Inside Out and Upside-Down: The Roles of Gas Cooling and Dynamical Heating in Shaping the Stellar Age-Velocity Relation
- Testing Gravity with wide binary stars like Centauri
- Tidally induced spiral arm wraps encoded in phase space
- Instabilities in disc galaxies: from noise to grooves to spirals
- Accretion of Small Satellites and Gas Inflows in a Disc Galaxy
- A revised view of the Canis Major stellar overdensity with DECam and Gaia: new evidence of a stellar warp of blue stars
- Build-up and survival of the disc: From numerical models of galaxy formation to the Milky Way