Artigo Acesso aberto Revisado por pares

Radio and Millimeter Properties of z ∼ 5.7 Lyα Emitters in the COSMOS Field: Limits on Radio AGNs, Submillimeter Galaxies, and Dust Obscuration

2007; Institute of Physics; Volume: 172; Issue: 1 Linguagem: Inglês

10.1086/516595

ISSN

1538-4365

Autores

C. L. Carilli, Takashi Murayama, R. Wang, E. Schinnerer, Yuki Taniguchi, V. Smolčić, F. Bertoldi, M. Ajiki, Tohru Nagao, S. Sasaki, Y. Shioya, James E. Aguirre, A. W. Blain, N. Z. Scoville, D. B. Sanders,

Tópico(s)

Radio Astronomy Observations and Technology

Resumo

We present observations at 1.4 and 250 GHz of the $z\sim 5.7$ Ly$α$ emitters (LAE) in the COSMOS field found by Murayama et al.. At 1.4 GHz there are 99 LAEs in the lower noise regions of the radio field. We do not detect any individual source down to 3$σ$ limits of $\sim 30μ$Jy beam$^{-1}$ at 1.4 GHz, nor do we detect a source in a stacking analysis, to a 2$σ$ limit of $2.5μ$Jy beam$^{-1}$. At 250 GHz we do not detect any of the 10 LAEs that are located within the central regions of the COSMOS field covered by MAMBO ($20' \times 20'$) to a typical 2$σ$ limit of $S_{250} < 2$mJy. The radio data imply that there are no low luminosity radio AGN with $L_{1.4} > 6\times 10^{24}$ W Hz$^{-1}$ in the LAE sample. The radio and millimeter observations also rule out any highly obscured, extreme starbursts in the sample, ie. any galaxies with massive star formation rates $> 1500$ M$_\odot$ year$^{-1}$ in the full sample (based on the radio data), or 500 M$_\odot$ year$^{-1}$ for the 10% of the LAE sample that fall in the central MAMBO field. The stacking analysis implies an upper limit to the mean massive star formation rate of $\sim 100$ M$_\odot$ year$^{-1}$.

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