English

The HerMES sub-millimetre local and low-redshift luminosity functions

Astrophysics of Galaxies 2016-01-27 v1

Abstract

We used wide area surveys over 39 deg2^2 by the HerMES collaboration, performed with the Herschel Observatory SPIRE multi-wavelength camera, to estimate the low-redshift, 0.02<z<0.50.02<z<0.5, monochromatic luminosity functions (LFs) of galaxies at 250, 350 and 500μ\,\mum. SPIRE flux densities were also combined with Spitzer photometry and multi-wavelength archival data to perform a complete SED fitting analysis of SPIRE detected sources to calculate precise k-corrections, as well as the bolometric infrared (8-1000μ\,\mum) luminosity functions and their low-zz evolution from a combination of statistical estimators. Integration of the latter prompted us to also compute the local luminosity density (LLD) and the comoving star formation rate density (SFRD) for our sources, and to compare them with theoretical predictions of galaxy formation models. The luminosity functions show significant and rapid luminosity evolution already at low redshifts, 0.02<z<0.20.02<z<0.2, with LIR(1+z)6.0±0.4_{IR}^* \propto (1+z)^{6.0\pm0.4} and ΦIR(1+z)2.1±0.4\Phi_{IR}^* \propto (1+z)^{-2.1\pm0.4}, L250(1+z)5.3±0.2_{250}^* \propto (1+z)^{5.3\pm0.2} and Φ250(1+z)0.6±0.4\Phi_{250}^* \propto (1+z)^{-0.6\pm0.4} estimated using the IR bolometric and the 250μ\,\mum LFs respectively. Converting our IR LD estimate into an SFRD assuming a standard Salpeter IMF and including the unobscured contribution based on the UV dust-uncorrected emission from local galaxies, we estimate a SFRD scaling of SFRD0+0.08z_0+0.08 z, where SFRD0(1.9±0.03)×102[MMpc3]_0\simeq (1.9\pm 0.03)\times 10^{-2} [\mathrm{M}_\odot\,\mathrm{Mpc}^{-3}] is our total SFRD estimate at z0.02z\sim0.02.

Keywords

Cite

@article{arxiv.1511.06167,
  title  = {The HerMES sub-millimetre local and low-redshift luminosity functions},
  author = {L. Marchetti and M. Vaccari and A. Franceschini and V. Arumugam and H. Aussel and M. Bethermin and J. Bock and A. Boselli and V. Buat and D. Burgarella and D. L. Clements and A. Conley and L. Conversi and A. Cooray and C. D. Dowell and D. Farrah and A. Feltre and J. Glenn and M. Griffin and E. Hatziminaoglou and S. Heinis and E. Ibar and R. J. Ivison and H. T. Nguyen and B. O'Halloran and S. J. Oliver and A. Omont and M. J. Page and A. Papageorgiou and C. P. Pearson and I. Perez-Fournon and M. Pohlen and D. Rigopoulou and I. G. Roseboom and M. Rowan-Robinson and B. Schulz and Douglas Scott and N. Seymour and D. L. Shupe and A. J. Smith and M. Symeonidis and I. Valtchanov and M. Viero and L. Wang and J. Wardlow and C. K. Xu and M. Zemcov},
  journal= {arXiv preprint arXiv:1511.06167},
  year   = {2016}
}

Comments

Accepted for publication by MNRAS on 17 Nov 2015

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