English

A Multi-wavelength View of the Star Formation Activity at z~3

Cosmology and Nongalactic Astrophysics 2015-05-18 v1

Abstract

We present a multi-wavelength, UV-to-radio analysis for a sample of massive (M_{\ast} \sim 1010^{10} M_\odot) IRAC- and MIPS 24μ\mum-detected Lyman Break Galaxies (LBGs) with spectroscopic redshifts z\sim3 in the GOODS-North field (LUV_{\rm UV}>1.8×>1.8\timesLz=3^{\ast}_{z=3}). For LBGs without individual 24μ\mum detections, we employ stacking techniques at 24μ\mum, 1.1mm and 1.4GHz, to construct the average UV-to-radio spectral energy distribution and find it to be consistent with that of a Luminous Infrared Galaxy (LIRG) with LIR\rm_{IR}=4.52.3+1.1^{+1.1}_{-2.3}×1011\times 10^{11} L_{\odot} and a specific star formation rate (SSFR) of 4.3 Gyr1^{-1} that corresponds to a mass doubling time \sim230 Myrs. On the other hand, when considering the 24μ\mum-detected LBGs we find among them galaxies with LIR>1012\rm_{IR}> 10^{12} L_{\odot}, indicating that the space density of zz\sim3 UV-selected Ultra-luminous Infrared Galaxies (ULIRGs) is \sim(1.5±\pm0.5)×105\times 10^{-5} Mpc3^{-3}. We compare measurements of star formation rates (SFRs) from data at different wavelengths and find that there is tight correlation (Kendall's τ>\tau > 99.7%) and excellent agreement between the values derived from dust-corrected UV, mid-IR, mm and radio data for the whole range of LIR\rm_{IR} up to LIR\rm_{IR} \sim 1013^{13} L_{\odot}. This range is greater than that for which the correlation is known to hold at z\sim2, possibly due to the lack of significant contribution from PAHs to the 24μ\mum flux at zz\sim3. The fact that this agreement is observed for galaxies with LIR\rm_{IR} >> 1012^{12} L_{\odot} suggests that star-formation in UV-selected ULIRGs, as well as the bulk of star-formation activity at this redshift, is not embedded in optically thick regions as seen in local ULIRGs and submillimeter-selected galaxies at z=2z=2.

Keywords

Cite

@article{arxiv.1003.5773,
  title  = {A Multi-wavelength View of the Star Formation Activity at z~3},
  author = {Georgios E. Magdis and David Elbaz and Emanuele Daddi and Glenn E. Morrison and Mark Dickinson and Dimitra Rigopoulou and Raphael Gobat and Ho Seong Hwang},
  journal= {arXiv preprint arXiv:1003.5773},
  year   = {2015}
}

Comments

Accepted for publication in ApJ