The Majority of Compact Massive Galaxies at z~2 are Disk Dominated
arXiv:1101.2423 · doi:10.1088/0004-637X/730/1/38
Abstract
We investigate the stellar structure of massive, quiescent galaxies at z~2, based on Hubble Space Telescope/WFC3 imaging from the Early Release Science program. Our sample of 14 galaxies has stellar masses of M* > 10^{10.8} Msol and photometric redshifts of 1.5 < z < 2.5. In agreement with previous work, their half-light radii are <2 kpc, much smaller than equally massive galaxies in the present-day universe. A significant subset of the sample appears highly flattened in projection, which implies, considering viewing angle statistics, that a significant fraction of the galaxies in our sample have pronounced disks. This is corroborated by two-dimensional surface brightness profile fits. We estimate that 65% +/- 15% of the population of massive, quiescent z~2 galaxies are disk-dominated. The median disk scale length is 1.5 kpc, substantially smaller than the disks of equally massive galaxies in the present-day universe. Our results provide strong observational evidence that the much-discussed ultra-dense high-redshift galaxies should generally be thought of as disk-like stellar systems with the majority of stars formed from gas that had time to settle into a disk.
published version
References in corpus (12)
- Detection of quiescent galaxies in a bicolor sequence from z=0-2
- Structure and star formation in galaxies out to z=3: evidence for surface density dependent evolution and upsizing
- Size evolution of the most massive galaxies at 1.7<z<3 from GOODS NICMOS survey imaging
- What do we learn from IRAC observations of galaxies at 2 < z < 3.5?
- Triaxial orbit based galaxy models with an application to the (apparent) decoupled core galaxy NGC 4365
- Multiple minor mergers: formation of elliptical galaxies and constraints for the growth of spiral disks
- NICMOS Imaging of DRGs in the HDF-S: A Relation Between Star-Formation and Size at z ~ 2.5
- Clustering of K-selected Galaxies at 2<z<3.5: Evidence for a Color-Density Relation
- The population of early-type galaxies at 1<z<2 - New clues on their formation and evolution
- Morphologies and Color Gradients of Luminous Evolved Galaxies at z~1.5
- Morphologies of Two Massive Old Galaxies at z ~ 2.5
- Extremely Red Objects in Two Quasar Fields at z ~ 1.5