Dissecting simulated disc galaxies I: the structure of mono-age populations
arXiv:1405.1726 · doi:10.1093/mnras/stu1003
Abstract
We study seven simulated disc galaxies, three with a quiescent merger history, and four with mergers in their last 9 Gyr of evolution. We compare their structure at z=0 by decomposing them into "mono-age populations" (MAPs) of stars within 500 Myr age bins. All studied galaxies undergo a phase of merging activity at high redshift, so that stars older than 9 Gyr are found in a centrally concentrated component, while younger stars are mostly found in discs. We find that most MAPs have simple exponential radial and vertical density profiles, with a scale-height that typically increases with age. Because a large range of merger histories can create populations with simple structures, this suggests that the simplicity of the structure of mono-abundance populations observed in the Milky Way by Bovy et al. (2012b,c) is not necessarily a direct indicator of a quiescent history for the Milky Way. Similarly, the anti-correlation between scale-length and scale-height does not necessarily imply a merger-free history. However, mergers produce discontinuities between thin and thick disc components, and jumps in the age-velocity relation. The absence of a structural discontinuity between thin and thick disc observed in the Milky Way would seem to be a good indicator that no merger with a mass ratio larger than 1:15-1:10 occurred in the last 9 Gyr. Mergers at higher redshift might nevertheless be necessary to produce the thickest, hottest components of the Milky Way's disc.
15 pages, 13 figures. Accepted for publication in MNRAS
References in corpus (4)
Cited by in corpus (25)
- On the Formation of Galactic Thick Disks
- The age-metallicity structure of the Milky Way disk
- Constraining the thick disc formation scenario of the Milky Way
- The Structure and Dynamical Evolution of the Stellar Disk of a Simulated Milky Way-Mass Galaxy
- The Fornax 3D project: unveiling the thick disk origin in FCC 170: signs of accretion?
- Oxygen abundances in G- and F-type stars from HARPS
- A radial age gradient in the geometrically thick disk of the Milky Way
- The Milky Way tomography with APOGEE: intrinsic density distribution and structure of mono-abundance populations
- Exploring the origin of thick disks using the NewHorizon and Galactica simulations
- Yule-Simpson's paradox in Galactic Archaeology
- Does the Milky Way Obey Spiral Galaxy Scaling Relations?
- Bars & boxy/peanut bulges in thin & thick discs: I. Morphology and line-of-sight velocities of a fiducial model
- Exponential Disks from Stellar Scattering: III. Stochastic Models
- Warp and flare of the old Galactic disc as traced by the red clump stars
- On the Flaring of Thick Disc of Galaxies: Insights from Simulations
- The structure of the Milky Way based on unWISE 3.4m integrated photometry
- 2D chemical evolution models II. Effects of multiple spiral arm patterns on O, Eu, Fe and Ba abundance gradients
- Stellar encounters with giant molecular clouds
- Stellar populations and origin of thick disks in AURIGA simulations
- The vertical metallicity gradients of mono-age stellar populations in the Milky Way with the RAVE and Gaia data
- Stellar migration in the Auriga simulations
- Disk flaring with TNG50: diversity across Milky Way and M31 analogs
- Bar-spiral interaction produces radial migration and star formation bursts
- Large-Scale Stellar Age-Velocity Spiral Pattern in NGC 4030
- Dynamical modelling of galactic disc outskirts