Thick-disk evolution induced by the growth of an embedded thin disk
arXiv:0912.2250 · doi:10.1088/0004-637X/718/1/314
Abstract
We perform collisionless N-body simulations to investigate the evolution of the structural and kinematical properties of simulated thick disks induced by the growth of an embedded thin disk. The thick disks used in the present study originate from cosmologically-common 5:1 encounters between initially-thin primary disk galaxies and infalling satellites. The growing thin disks are modeled as static gravitational potentials and we explore a variety of growing-disk parameters that are likely to influence the response of thick disks. We find that the final thick-disk properties depend strongly on the total mass and radial scale-length of the growing thin disk, and much less sensitively on its growth timescale and vertical scale-height as well as the initial sense of thick-disk rotation. Overall, the growth of an embedded thin disk can cause a substantial contraction in both the radial and vertical direction, resulting in a significant decrease in the scale-lengths and scale-heights of thick disks. Kinematically, a growing thin disk can induce a notable increase in the mean rotation and velocity dispersions of thick-disk stars. We conclude that the reformation of a thin disk via gas accretion may play a significant role in setting the structure and kinematics of thick disks, and thus it is an important ingredient in models of thick-disk formation.
19 pages, 17 figures, 1 table, LaTeX (uses emulateapj.cls). Replaced to match the version accepted for publication in ApJ. Fig. 3 added
References in corpus (16)
- Forming Disk Galaxies in Lambda CDM Simulations
- The Milky Way Tomography with SDSS: II. Stellar Metallicity
- A primer on hierarchical galaxy formation: the semi-analytical approach
- Star formation efficiency in galaxy interactions and mergers: a statistical study
- Size evolution of the most massive galaxies at 1.7<z<3 from GOODS NICMOS survey imaging
- The Haunted Halos of Andromeda and Triangulum: A panorama of galaxy formation in action
- The thick disks of spiral galaxies as relics from gas-rich, turbulent, clumpy disks at high redshift
- Thin, thick and dark discs in LCDM
- Observations of Thick Disks in the Hubble Space Telescope Ultra Deep Field
- Cold Dark Matter Substructure and Galactic Disks II: Dynamical Effects of Hierarchical Satellite Accretion
- Can Gas prevent the Destruction of Thin Stellar Discs by Minor Mergers?
- The Radical Consequences of Realistic Satellite Orbits for the Heating and Implied Merger Histories of Galactic Disks
- The Destruction of Thin Stellar Disks Via Cosmologically Common Satellite Accretion Events
- Galactic kinematics with RAVE data: I. The distribution of stars towards the Galactic poles
- Velocity Shear of the Thick Disk from SPM3 Proper Motions at the South Galactic Pole
- Substructure around M31 : Evolution and Effects
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