English

Cosmic star formation history and AGN evolution near and far: AKARI reveals both

Astrophysics of Galaxies 2015-05-04 v1 Cosmology and Nongalactic Astrophysics High Energy Astrophysical Phenomena

Abstract

Understanding infrared (IR) luminosity is fundamental to understanding the cosmic star formation history and AGN evolution, since their most intense stages are often obscured by dust. Japanese infrared satellite, AKARI, provided unique data sets to probe this both at low and high redshifts. The AKARI performed all sky survey in 6 IR bands (9, 18, 65, 90, 140, and 160μ\mum) with 3-10 times better sensitivity than IRAS, covering the crucial far-IR wavelengths across the peak of the dust emission. Combined with a better spatial resolution, AKARI can much more precisely measure the total infrared luminosity (LTIRL_{TIR}) of individual galaxies, and thus, the total infrared luminosity density of the local Universe. In the AKARI NEP deep field, we construct restframe 8μ\mum, 12μ\mum, and total infrared (TIR) luminosity functions (LFs) at 0.15<z<<z<2.2 using 4128 infrared sources. A continuous filter coverage in the mid-IR wavelength (2.4, 3.2, 4.1, 7, 9, 11, 15, 18, and 24μ\mum) by the AKARI satellite allows us to estimate restframe 8μ\mum and 12μ\mum luminosities without using a large extrapolation based on a SED fit, which was the largest uncertainty in previous work. By combining these two results, we reveal dust-hidden cosmic star formation history and AGN evolution from zz=0 to zz=2.2, all probed by the AKARI satellite.

Keywords

Cite

@article{arxiv.1505.00010,
  title  = {Cosmic star formation history and AGN evolution near and far: AKARI reveals both},
  author = {Tomotsugu Goto and AKARI NEP team and AKARI all sky survey team},
  journal= {arXiv preprint arXiv:1505.00010},
  year   = {2015}
}

Comments

Published in 2012, PKAS, 27, 347. Proceedings of the Second AKARI conference, Legacy of AKARI: A Panoramic View of the Dusty Universe