English

The evolution of the UV-to-mm extragalactic background light: evidence for a top-heavy initial mass function?

Astrophysics of Galaxies 2019-06-19 v4

Abstract

We present predictions for the UV-to-mm extragalactic background light (EBL) from a recent version of the GALFORM semi-analytical model of galaxy formation which invokes a top-heavy stellar initial mass function (IMF) for galaxies undergoing dynamically-triggered bursts of star formation. We combine GALFORM with the GRASIL radiative transfer code for computing fully self-consistent UV-to-mm spectral energy distributions for each simulated galaxy, accounting for the absorption and re-emission of stellar radiation by interstellar dust. The predicted EBL is in near-perfect agreement with recent observations over the whole UV-to-mm spectrum, as is the evolution of the cosmic spectral energy distribution over the redshift range for which observations are available (z1z\lesssim1). We show that approximately 90~per~cent of the EBL is produced at z<2z<2 although this shifts to higher redshifts for sub-mm wavelengths. We assess whether the top-heavy IMF in starbursts is necessary in order to reproduce the EBL at the same time as other key observables, and find that variant models with a universal solar-neighborhood IMF display poorer agreement with EBL observations over the whole UV-to-mm spectrum and fail to match the counts of galaxies in the sub-mm.

Keywords

Cite

@article{arxiv.1808.05208,
  title  = {The evolution of the UV-to-mm extragalactic background light: evidence for a top-heavy initial mass function?},
  author = {William. I. Cowley and Cedric G. Lacey and Carlton M. Baugh and Shaun Cole and Carlos S. Frenk and Claudia del P. Lagos},
  journal= {arXiv preprint arXiv:1808.05208},
  year   = {2019}
}

Comments

15 pages (+6 of Appendices), 9 figures (+5 in Appendices), Main results in Figs. 1 and 6. Accepted for publication in MNRAS