The Color Magnitude Distribution of Field Galaxies to z~3: the evolution and modeling of the blue sequence
arXiv:0705.3325 · doi:10.1086/519436
Abstract
Using deep NIR VLT/ISAAC and optical HST/WFPC2 imaging in the fields of the HDFS and MS1054-03, we study the rest-frame UV-to-optical colors and magnitudes of galaxies to z~3. While there is no evidence for a red sequence at z~3, there does appear to be a well-defined color-magnitude relation (CMR) for blue galaxies at all redshifts, with more luminous galaxies having redder U-V colors. The slope of the blue CMR is independent of redshift d(U-V)/dMV = -0.09 (0.01) and can be explained by a correlation of dust-reddening with luminosity. The average color at fixed luminosity reddens strongly Δ(U-V) = 0.75 from z~3 to z=0, much of which can be attributed to aging of the stars. The color scatter of the blue sequence is relatively small sigma(U-V) = 0.25 (0.03) and constant to z~3, but notably asymmetrical with a sharp blue ridge and a wing towards redder colors. We explore sets of star formation histories to study the constraints placed by the shape of the scatter at z=2-3. One particular set of models, episodic star formation, reproduces the detailed properties very well. For a two-state model with high and low star formation, the duty cycle is constrained to be > 40% and the contrast between the states must be a factor > 5 (or a scatter in log(SFR) of > 0.35 dex around the mean). However, episodic models do not explain the observed tail of very red galaxies, primarily Distant Red Galaxies (DRGs), which may have ceased star formation altogether or are more heavily obscured. Finally, the relative number density of red, luminous MV < -20.5 galaxies increases by a factor of ~ 6 from z = 2.7 to z = 0.5, as does their contribution to the total rest-frame V-band luminosity density. We are likely viewing the progressive formation of red, passively evolving galaxies.
29 pages, 24 figures, in emulateapj style. Abstract is abridged. Some postscript figures are compressed. accepted for publication in ApJ (scheduled for August 20, 2007, v665n 2 issue)
References in corpus (7)
- The Mass-Metallicity Relation at z~2
- The Stellar, Gas and Dynamical Masses of Star-Forming Galaxies at z~2
- NICMOS Imaging of DRGs in the HDF-S: A Relation Between Star-Formation and Size at z ~ 2.5
- Empirical strong-line oxygen abundance calibrations from galaxies with electron temperature measurements
- The rest-frame optical luminosity functions of galaxies at 2<z<3.5
- Measuring the Average Evolution of Luminous Galaxies at z<3: The Rest-frame Optical Luminosity Density, Spectral Energy Distribution, and Stellar Mass Density
- Direct Measurements of the Stellar Continua and Balmer/4000 Angstrom Breaks of Red z>2 Galaxies: Redshifts and Improved Constraints on Stellar Populations
Cited by in corpus (15)
- The UV-Optical Color Magnitude Diagram II: Physical Properties and Morphological Evolution On and Off of a Star-Forming Sequence
- The Detection of a Red Sequence of Massive Field Galaxies at z~2.3 and its Evolution to z~0
- A Census of the Bright z=8.5-11 Universe with the Hubble and Spitzer Space Telescopes in the CANDELS Fields
- Tracing the Mass-Dependent Star Formation History of Late-Type Galaxies using X-ray Emission: Results from the Chandra Deep Fields
- Ultraviolet through Infrared Spectral Energy Distributions from 1000 SDSS Galaxies: Dust Attenuation
- Exploring the evolutionary paths of the most massive galaxies since z~2
- Ultraviolet, Optical, and Infrared Constraints on Models of Stellar Populations and Dust Attenuation
- Radio--Far infrared correlation in "blue cloud" galaxies with 0<z<1.2
- The red and blue galaxy populations in the GOODS field: evidence for an excess of red dwarfs
- Reconstructing the observed ionizing photon production efficiency at z~2 using stellar population models
- The UV Continuum of z > 1 Star-forming Galaxies in the Hubble Ultraviolet UltraDeep Field
- Lyman-Break Galaxies at in the Subaru Deep Field: Luminosity Function, Clustering and [OIII] Emission
- Determining the Halo Mass Scale where Galaxies Lose Their Gas
- Spectral-based k-corrections and implications for the colour-magnitude relation of E/S0s and its evolution
- Some Musings on Galaxy Morphology