arXiv · astro-ph/0506462
Infrared luminosity functions from the Chandra Deep Field South : the Spitzer view on the history of dusty star formation at 0<z<1
Abstract
We analyze a sample of ~2600 MIPS/Spitzer 24mic sources brighter than ~80muJy and located in the Chandra Deep Field South to characterize the evolution of the comoving infrared (IR) energy density of the Universe up to z~1. Using published ancillary optical data we first obtain a nearly complete redshift determination for the 24mic objects associated with R<24 counterparts at z<1. We find that the 24mic population at 0.5 10^11 L_IR) are responsible for 70+/-15% of this energy density at z~1. Taking into account the contribution of the UV luminosity evolving as (1+z)^~2.5, we infer that these IR-luminous sources dominate the star-forming activity beyond z~0.7. The uncertainties affecting these conclusions are largely dominated by the errors in the k-corrections used to convert 24mic fluxes into luminosities.
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E. Le Floc'h, C. Papovich, H. Dole, E. Bell, G. Lagache, G. Rieke, E. Egami, P. Perez-Gonzalez, A. Alonso-Herrero, M. Rieke, M. Blaylock, C. Engelbracht, K. Gordon, D. Hines, K. Misselt, J. Morrison, J. Mould. 2005-06-20. Infrared luminosity functions from the Chandra Deep Field South : the Spitzer view on the history of dusty star formation at 0<z<1. https://doi.org/10.1086/432789
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