Disk galaxies with broken luminosity profiles from cosmological simulations
arXiv:0906.1118 · doi:10.1088/0004-637X/705/2/L133
Abstract
We present SPH cosmological simulations of the formation of three disk galaxies with a detailed treatment of chemical evolution and cooling. The resulting galaxies have properties compatible with observations: relatively high disk-to-total ratios, thin stellar disks and good agreement with the Tully-Fisher and the luminosity-size relations. They present a break in the luminosity profile at 3.0 +- 0.5 disk scale lengths, while showing an exponential mass profile without any apparent breaks, in line with recent observational results. Since the stellar mass profile is exponential, only differences in the stellar populations can be the cause of the luminosity break. Although we find a cutoff for the star formation rate imposed by a density threshold in our star formation model, it does not coincide with the luminosity break and is located at 4.3 +- 0.4 disk scale lengths, with star formation going on between both radii. The color profiles and the age profiles are "U-shaped", with the minimum for both profiles located approximately at the break radius. The SFR to stellar mass ratio increases until the break, explaining the coincidence of the break with the minimum of the age profile. Beyond the break we find a steep decline in the gas density and, consequently, a decline in the SFR and redder colors. We show that most stars (64-78%) in the outer disk originate in the inner disk and afterwards migrate there. Such stellar migrations are likely the main origin of the U-shaped age profile and, therefore, of the luminosity break.
8 pages, 4 figures. Accepted by ApJL
References in corpus (15)
- Forming Disk Galaxies in Lambda CDM Simulations
- Structural Properties of Pseudo-Bulges, Classical Bulges and Elliptical Galaxies: an SDSS Perspective
- Riding the Spiral Waves: Implications of Stellar Migration for the Properties of Galactic Disks
- Rapid formation of exponential disks and bulges at high redshift from the dynamical evolution of clump cluster and chain galaxies
- The structure of galactic disks: Studying late-type spiral galaxies using SDSS
- The Outer Disks of Early-Type Galaxies. I. Surface-Brightness Profiles of Barred Galaxies
- Color Profiles of Spiral Galaxies: Clues on Outer-Disk Formation Scenarios
- Initial Conditions for Large Cosmological Simulations
- Chemical evolution of galaxies. I. A composition-dependent SPH model for chemical evolution and cooling
- Truncations of stellar disk and warps of HI-layers in edge-on spiral galaxies
- Stellar populations across the NGC4244 truncated galactic disk
- An N-body/SPH Study of Isolated Galaxy Mass Density Profiles
- Color Profiles of Disk Galaxies since z~1: Probing Outer Disk Formation Scenarios
- Cosmic Evolution of Stellar Disk Truncations: From z~1 to the Local Universe
- On the 3 dimensional structure of edge-on disk galaxies
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- New Constraints on the Origin of Surface Brightness Profile Breaks of Disk Galaxies from MaNGA
- Using the EAGLE simulations to elucidate the origin of disc surface brightness profile breaks as a function of mass and environment