How to bend galaxy disc profiles: the role of halo spin
arXiv:1501.01960 · doi:10.1093/mnrasl/slv006
Abstract
The radial density profiles of stellar galaxy discs can be well approximated as an exponential. Compared to this canonical form, however, the profiles in the majority of disc galaxies show downward or upward breaks at large radii. Currently, there is no coherent explanation in a galaxy formation context of the radial profile per se, along with the two types of profile breaks. Using a set of controlled hydrodynamic simulations of disc galaxy formation, we find a correlation between the host halo's initial angular momentum and the resulting radial profile of the stellar disc: galaxies that live in haloes with a low spin parameter λ <~ 0.03 show an up-bending break in their disc density profiles, while galaxies in haloes of higher angular momentum show a down-bending break. We find that the case of pure exponential profiles (λ ~ 0.035) coincides with the peak of the spin parameter distribution from cosmological simulations. Our simulations not only imply an explanation of the observed behaviours, but also suggest that the physical origin of this effect is related to the amount of radial redistribution of stellar mass, which is anti-correlated with λ.
6 pages, 3 figures, adapted to the published version in MNRAS-L
References in corpus (6)
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Concentration, Spin and Shape of Dark Matter Haloes as a Function of the Cosmological Model: WMAP1, WMAP3 and WMAP5 results
- The structure of galactic disks: Studying late-type spiral galaxies using SDSS
- A Superbubble Feedback Model for Galaxy Simulations
- Why stellar feedback promotes disc formation in simulated galaxies
- On the Origin of Exponential Galaxy Disks
Cited by in corpus (15)
- The Auriga Project: the properties and formation mechanisms of disc galaxies across cosmic time
- The Milky Way tomography with APOGEE: intrinsic density distribution and structure of mono-abundance populations
- Exponential Disks from Stellar Scattering: III. Stochastic Models
- The Role of Stellar Radial Motions in Shaping Galaxy Surface Brightness Profiles
- Forming disc galaxies in major mergers: III. The effect of angular momentum on the radial density profiles of disc galaxies
- The Impact of Stellar Migration on Disk Outskirts
- The Physical Origin of the Mass-Size Relation and Its Scatter of Disk Galaxies
- Evolution of the anti-truncated stellar profiles of S0 galaxies since in the SHARDS survey: I - Sample and Methods
- New Constraints on the Origin of Surface Brightness Profile Breaks of Disk Galaxies from MaNGA
- The origin of type-I profiles in cluster lenticulars: An interplay between ram pressure stripping and tidally-induced spiral migration
- Near-exponential surface densities as hydrostatic, nonequilibrium profiles in galaxy discs
- The Lop-sided Spiral Galaxy NGC 247: Clues to a Possible Interaction with NGC 253
- Exploring the outskirts of the EAGLE disc galaxies
- Dynamical modelling of galactic disc outskirts
- Superbubbles as the source of dynamical friction: gas migration, stellar and dark matter contributions