Where stars form and live at high redshift: clues from the infrared
arXiv:1201.0546 · doi:10.1051/0004-6361/201118607
Abstract
The relation between dark matter halos and the loci of star formation at high redshift is a pressing question in contemporary cosmology. Matching the abundance of halos to the abundance of infrared (IR) galaxies, we explicit the link between dark matter halo mass (Mh), stellar mass (M*) and star-formation rate (SFR) up to a redshift of 2. Our findings are five-fold. First, we find a strong evolution of the relation between M* and SFR as a function of redshift with an increase of sSFR = SFR/M* by a factor ~30 between z=0 and z= 2.3. Second, we observe a decrease of sSFR with stellar mass. These results reproduce observed trends at redshift z>0.3. Third, we find that the star formation is most efficient in dark matter halos with Mh~5x10^11 Msun, with hints of an increase of this mass with redshift. Fourth, we find that SFR/Mh increases by a factor ~15 between z = 0 and z = 2.3. Finally we find that the SFR density is dominated by halo masses close to ~7x10^11 Msun at all redshift, with a rapid decrease at lower and higher halo masses. Despite its simplicity, our novel use of IR observations unveils some characteristic mass-scales governing star formation at high redshift.
5 pages, 3 figures, accepted by A&A, y-axis label fixed in Fig 2 and 3
References in corpus (14)
- GOODS-Herschel: an infrared main sequence for star-forming galaxies
- The lesser role of starbursts for star formation at z=2
- The stellar mass assembly of galaxies from z=0 to z=4. Analysis of a sample selected in the rest-frame near-infrared with Spitzer
- Evolution of the dusty infrared luminosity function from z=0 to z=2.3 using observations from Spitzer
- Towards a Concordant Model of Halo Occupation Statistics
- Planck Early Results XVIII: The power spectrum of cosmic infrared background anisotropies
- The Evolution of Stellar Mass and the Implied Star Formation History
- Evolution in the Halo Masses of Isolated Galaxies between z~1 and z~0: From DEEP2 to SDSS
- The evolution of the specific star formation rate of massive galaxies to z ~ 1.8 in the E-CDFS
- Sub-millimetre galaxies reside in dark matter halos with masses greater than 3x10^11 solar masses
- MOIRCS Deep Survey IV: Evolution of Galaxy Stellar Mass Function Back to z ~ 3
- The Physical Origins of The Morphology-Density Relation: Evidence for Gas Stripping from the SDSS
- Star Formation in a Stellar Mass Selected Sample of Galaxies to z=3 from the GOODS NICMOS Survey (GNS)
- Satellite Kinematics I: A New Method to Constrain the Halo Mass-Luminosity Relation of Central Galaxies
Cited by in corpus (32)
- The Average Star Formation Histories of Galaxies in Dark Matter Halos from z=0-8
- Planck 2013 results. XXX. Cosmic infrared background measurements and implications for star formation
- A unified empirical model for infrared galaxy counts based on observed physical evolution of distant galaxies
- The impact of clustering and angular resolution on far-infrared and millimeter continuum observations
- HerMES: Cosmic Infrared Background Anisotropies and the Clustering of Dusty Star-Forming Galaxies
- A Simple Technique for Predicting High-Redshift Galaxy Evolution
- Planck 2013 results. XVIII. Gravitational lensing-infrared background correlation
- HerMES: The Contribution to the Cosmic Infrared Background from Galaxies Selected by Mass and Redshift
- The redshift-evolution of the distribution of star formation among dark matter halos as seen in the infrared
- Improved Models for Cosmic Infrared Background Anisotropies: New Constraints on the IR Galaxy Population
- Intensity mapping of [CII] from early galaxies
- An Empirical Model for the Star Formation History in Dark Matter Halos
- Search for CII Emission on Cosmological Scales at Redshift Z~2.6
- Dissecting the high-z interstellar medium through intensity mapping cross-correlations
- Inferring the mass of sub-millimetre galaxies by exploiting their gravitational magnification of background galaxies
- CONCERTO: High-fidelity simulation of millimeter line emissions of galaxies and [CII] intensity mapping
- Herschel reveals the obscured star formation in HiZELS Hα emitters at z=1.47
- The simplest model of galaxy formation I: A formation history model of galaxy stellar mass growth
- Clustering, host halos and environment of z2 galaxies as a function of their physical properties
- Impact of polarised extragalactic sources on the measurement of CMB B-mode anisotropies
- Cross-correlation of cosmic far-infrared background anisotropies with large scale structures
- Constraining thermal dust emission in distant galaxies with number counts and angular power spectra
- Selection of massive evolved galaxies at in the CANDELS fields
- Using Galaxy Pairs to Probe Star Formation During Major Halo Mergers
- A Conditional Luminosity Function Model of the Cosmic Far-Infrared Background Anisotropy Power Spectrum
- CMB lensing reconstruction biases from masking extragalactic sources
- Galaxy stellar mass assembly: the difficulty matching observations and semi-analytical predictions
- Towards a new modelling of gas flows in a semi-analytical model of galaxy formation and evolution
- A minimal empirical model for the cosmic far-infrared background anisotropies
- Downsizing of Star Formation Measured from the Clustered Infrared Background Correlated with Quasars
- Do you see what I see? Exploring the consequences of luminosity limits in black hole-galaxy evolution studies
- The star-forming main sequence and the contribution of dust-obscured star formation since from the FUV+IR luminosity functions