The VVDS-SWIRE-GALEX-CFHTLS surveys: Physical properties of galaxies at z below 1.2 from photometric data
arXiv:0807.4636 · doi:10.1051/0004-6361:200810704
Abstract
We intend to show that it is possible to derive the physical parameters of galaxies from their broad-band spectral energy distribution out to a redshift of 1.2. This method has the potential to yield the physical parameters of all galaxies in a single field in a homogeneous way. We use an extensive dataset, assembled in the context of the VVDS survey, which reaches from the UV to the IR and covers a sample of 84073 galaxies over an area of 0.89 deg. We also use a library of 100000 model galaxies with a large variety of star formation histories (in particular including late bursts of star formation). We find that we can determine the physical parameters stellar mass, age and star formation rate with good confidence. We validate the star formation rate determinations in particular by comparing it to a sample of spectroscopically observed galaxies with an emission line measurement. We use our sample to build the number density function of galaxies as a function of stellar mass, specific star formation rate and redshift. We then study whether the stellar mass function at a later time can be predicted from the stellar mass function and star formation rate distribution at an earlier time. We find that the predicted growth in stellar mass from star formation agrees with the observed one. However, the predicted stellar mass density for massive galaxies is lower than observed, while the mass density of intermediate mass galaxies is overpredicted. When comparing with a direct measurement of the major merger rate from the VVDS survey we find that major mergers are sufficient to explain about a third of the mass build-up at the massive end, while the rest is likely contributed through minor mergers.
A&A in print, version incorporates referee comments and language editing
References in corpus (29)
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- K-corrections and filter transformations in the ultraviolet, optical, and near infrared
- UV Star Formation Rates in the Local Universe
- Evolution of asymptotic giant branch stars I. Updated synthetic TP-AGB models and their basic calibration
- Evidence for TP-AGB stars in high redshift galaxies, and their effect on deriving stellar population parameters
- The star formation histories of galaxies in the Sloan Digital Sky Survey
- Star Formation and the Growth of Stellar Mass
- Bursting and Quenching in Massive Galaxies without Major Mergers or AGNs
- The VIMOS VLT Deep Survey: The build-up of the colour-density relation
- The dependence of Star Formation on Galaxy Stellar Mass
- The Physical Nature of Rest-UV Galaxy Morphology During the Peak Epoch of Galaxy Formation
- The Stellar Masses and Star Formation Histories of Galaxies at z ~ 6: Constraints from Spitzer Observations in the Great Observatories Origins Deep Survey
- The contribution of star formation and merging to stellar mass buildup in galaxies
- The VIMOS-VLT Deep Survey. Color bimodality and the mix of galaxy populations up to z~2
- Accretion, feedback and galaxy bimodality: a comparison of the GalICS semi-analytic model and cosmological SPH simulations
- Extended, regular HI structures around early-type galaxies
- The Local Universe as Seen in Far-Infrared and in Far-Ultraviolet: A Global Point of View on the Local Recent Star Formation
- Constraints on Physical Properties of z~6 Galaxies Using Cosmological Hydrodynamic Simulations
- UV to IR SEDs of UV selected galaxies in the ELAIS fields: evolution of dust attenuation and star formation activity from z=0.7 to z=0.2
- Strong dusty bursts of star formation in galaxies falling into the cluster RXJ0152.7-1357
- The cosmic star formation rate evolution from z=5 to z=0 from the VIMOS VLT Deep Survey
- The VIMOS VLT Deep Survey: Tracing the galaxy stellar mass assembly history over the last 8Gyr
- The Star Formation and Extinction Co-Evolution of UV-Selected Galaxies over 0.05<z<1.2
- Lyman Break Galaxies at z~1 and the evolution of the dust attenuation in star-forming galaxies with the redshift
- Ultraviolet, Optical, and Infrared Constraints on Models of Stellar Populations and Dust Attenuation
- The VIMOS VLT Deep Survey: the faint type-1 AGN sample
- Extinction Corrected Star Formation Rates Empirically Derived from Ultraviolet-Optical Colors
- A 3-Dimensional study of the Local Environment of Bright IRAS Galaxies: The AGN/Starburst connection
- The contribution of very massive high-redshift SWIRE galaxies to the stellar mass function
Cited by in corpus (15)
- PRIMUS: Constraints on Star Formation Quenching and Galaxy Merging, and the Evolution of the Stellar Mass Function From z=0-1
- CALIFA: a diameter-selected sample for an integral field spectroscopy galaxy survey
- Constraining the properties of AGN host galaxies with Spectral Energy Distribution modeling
- Post-starburst galaxies: more than just an interesting curiosity
- Mid-IR Luminosities and UV/Optical Star Formation Rates at z<1.4
- Should we believe the results of UV-mm galaxy SED modelling?
- Physical properties of galaxies and their evolution in the VIMOS VLT Deep Survey. I. The evolution of the mass-metallicity relation up to z~0.9
- The VIMOS VLT Deep Survey: the contribution of minor mergers to the growth of L_B >= L*_B galaxies since z ~ 1 from spectroscopically identified pairs
- The spatially-resolved star formation histories of CALIFA galaxies: Implications for galaxy formation
- BayeSED: A General Approach to Fitting the Spectral Energy Distribution of Galaxies
- A Study on the Chemical Properties of Blue Compact Dwarf Galaxies
- [Ultra] Luminous Infrared Galaxies selected at 90 m in the AKARI deep field: a study of AGN types contributing to their infrared emission
- Polynomial expansion of the star formation history in galaxies
- Improved SED-Fitting Assumptions Result in Inside-Out Quenching at and Quenching at All Radii Simultaneously at
- Galaxy evolution on resolved scales: ageing and quenching in CALIFA