The Comoving Infrared Luminosity Density: Domination of Cold Galaxies across 0<z<1
arXiv:0911.4134 · doi:10.1111/j.1365-2966.2009.16083.x
Abstract
In this paper we examine the contribution of galaxies with different infrared (IR) spectral energy distributions (SEDs) to the comoving infrared luminosity density, a proxy for the comoving star formation rate (SFR) density. We characterise galaxies as having either a cold or hot IR SED depending upon whether the rest-frame wavelength of their peak IR energy output is above or below 90um. Our work is based on a far-IR selected sample both in the local Universe and at high redshift, the former consisting of IRAS 60um-selected galaxies at z<0.07 and the latter of Spitzer 70um selected galaxies across 0.1<z<1. We find that the total IR luminosity densities for each redshift/luminosity bin agree well with results derived from other deep mid/far-IR surveys. At z<0.07 we observe the previously known results: that moderate luminosity galaxies (L_IR<10^11 Lsun) dominate the total luminosity density and that the fraction of cold galaxies decreases with increasing luminosity, becoming negligible at the highest luminosities. Conversely, above z=0.1 we find that luminous IR galaxies (L_IR>10^11 Lsun), the majority of which are cold, dominate the IR luminosity density. We therefore infer that cold galaxies dominate the IR luminosity density across the whole 0<z<1 range, hence appear to be the main driver behind the increase in SFR density up to z~1 whereas local luminous galaxies are not, on the whole, representative of the high redshift population.
5 pages, 3 figures, accepted for publication in MNRAS
References in corpus (8)
- The All-wavelength Extended Groth Strip International Survey (AEGIS) Data Sets
- The 0.4 < z < 1.3 star formation history of the Universe as viewed in the far-infrared
- High resolution mid-infrared spectroscopy of ultraluminous infrared galaxies
- The Star Formation History of the Universe as Revealed by Deep Radio Observations
- Dust in starburst nuclei and ULIRGs: SED models for observers
- A new model for infrared and submillimetre counts
- The SCUBA Half-Degree Extragalactic Survey (SHADES) - VIII. The Nature of Faint Submm Galaxies in SHADES, SWIRE and SXDF Surveys
- AEGIS: Infrared Spectral Energy Distributions of MIPS 70micron selected sources
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- MIPS 24 Micron Observations of the Hubble Deep Field South: Probing the IR-Radio Correlation of Galaxies at z > 1
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