Galaxy evolution in the infra-red: comparison of a hierarchical galaxy formation model with SPITZER data
arXiv:0704.1562 · doi:10.1111/j.1365-2966.2008.12949.x
Abstract
We present predictions for the evolution of the galaxy luminosity function, number counts and redshift distributions in the IR based on the Lambda-CDM cosmological model. We use the combined GALFORM semi-analytical galaxy formation model and GRASIL spectrophotometric code to compute galaxy SEDs including the reprocessing of radiation by dust. The model, which is the same as that in Baugh et al (2005), assumes two different IMFs: a normal solar neighbourhood IMF for quiescent star formation in disks, and a very top-heavy IMF in starbursts triggered by galaxy mergers. We have shown previously that the top-heavy IMF seems to be necessary to explain the number counts of faint sub-mm galaxies. We compare the model with observational data from the SPITZER Space Telescope, with the model parameters fixed at values chosen before SPITZER data became available. We find that the model matches the observed evolution in the IR remarkably well over the whole range of wavelengths probed by SPITZER. In particular, the SPITZER data show that there is strong evolution in the mid-IR galaxy luminosity function over the redshift range z ~ 0-2, and this is reproduced by our model without requiring any adjustment of parameters. On the other hand, a model with a normal IMF in starbursts predicts far too little evolution in the mid-IR luminosity function, and is therefore excluded.
LaTeX, 26 pages, 19 figures. Accepted for publication in MNRAS. Minor changes from original version in response to referee's report
References in corpus (9)
- The Two Young Star Disks in the Central Parsec of the Galaxy: Properties, Dynamics and Formation
- A primer on hierarchical galaxy formation: the semi-analytical approach
- The MORGANA model for the rise of galaxies and active nuclei
- On the Evolutionary History of Stars and their Fossil Mass and Light
- Evidence for a Long-Standing Top-Heavy IMF in the Central Parsec of the Galaxy
- Spitzer 70-micron Source Counts in GOODS-North
- Cosmic evolution of the galaxy mass and luminosity functions by morphological type from multi-wavelength data in the CDF-South
- The Local Galaxy 8 micron Luminosity Function
- The structural and photometric properties of early-type galaxies in hierarchical models
Cited by in corpus (19)
- Submillimetre galaxies in a hierarchical universe: number counts, redshift distribution, and implications for the IMF
- X-ray coronae in simulations of disc galaxy formation
- A catalog of mid-infrared sources in the Extended Groth Strip
- Carbon monoxide line emission as a CMB foreground: tomography of the star-forming universe with different spectral resolutions
- Physical Characterization of an Unlensed Dusty Star-Forming Galaxy at
- The origin of the atomic and molecular gas contents of early-type galaxies. I. A new test of galaxy formation physics
- Evaluating and Improving Semi-analytic modelling of Dust in Galaxies based on Radiative Transfer Calculations
- Testing the predictions of the cold dark matter model for the sizes, colours, morphologies and luminosities of galaxies with the SDSS
- The clustering of Ly-alpha emitters in a LambdaCDM Universe
- Pégase.3: A code for modeling the UV-to-IR/submm spectral and chemical evolution of galaxies with dust
- The ISM Properties and Gas Kinematics of a Redshift 3 Massive Dusty Star-forming Galaxy
- Mock galaxy redshift catalogues from simulations: implications for Pan-STARRS1
- The Clustering and Halo Masses of Star Forming Galaxies at z<1
- The Herschel Virgo Cluster Survey. XVII. SPIRE point-source catalogs and number counts
- High-z Sudoku: A diagnostic tool for identifying robust (sub)mm redshifts
- Are z>2 Herschel galaxies proto-spheroids?
- Active Galactic Nuclei and their Role in Galaxy Evolution: The Infrared Perspective
- Galaxy and Mass Assembly (GAMA): Mid-infrared properties as tracers of galaxy environment
- Using dust to constrain dark matter models