An ALMA survey of the SCUBA-2 Cosmology Legacy Survey UKIDSS/UDS field: Identifying candidate z~4.5 [CII] emitters

Abstract

We report the results of a search for serendipitous [CII] 157.74μm emitters at z4.4-4.7 using the Atacama Large Millimeter/submillimeter Array (ALMA). The search exploits the AS2UDS continuum survey, which covers ~50 arcmin2 of the sky towards 695 luminous (S8701mJy) submillimeter galaxies (SMGs), selected from the SCUBA-2 Cosmology Legacy Survey (S2CLS) 0.96deg2 Ultra Deep Survey (UDS) field. We detect ten candidate line emitters, with an expected false detection rate of ten percent. All of these line emitters correspond to 870μm continuum-detected sources in AS2UDS. The emission lines in two emitters appear to be high-J CO, but the remainder have multi-wavelength properties consistent with [CII] from z4.5 galaxies. Using our sample, we place a lower limit of >5×10-6Mpc-3 on the space density of luminous (L IR 1013Lsun) SMGs at z=4.40-4.66, suggesting 7percent of SMGs with S870μ m1mJy lie at 4<z<5. From stacking the high-resolution (0.15" full-width half maximum) ALMA 870μm imaging, we show that the [CII] line emission is more extended than the continuum dust emission, with an average effective radius for the [CII] of r e = 1.7+0.1-0.2kpc compared to r e = 1.00.1kpc for the continuum (rest-frame 160μm). By fitting the far-infrared photometry for these galaxies from 100-870μm, we show that SMGs at z4.5 have a median dust temperature of T d=554K. This is systematically warmer than 870μm-selected SMGs at z2, which typically have temperatures around 35K. These z4.5 SMGs display a steeper trend in the luminosity-temperature plane than z2 SMGs. We discuss the implications of this result in terms of the selection biases of high redshift starbursts in far-infrared/submillimeter surveys.

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