Abstract
We report on early results from very deep and wide-field narrowband imaging on a 543 arcmin2 area of the Subaru Deep Field. We find 87 Ly? emitters (LAEs) at z = 4.86 ?0.03 that are photometrically selected by a combination of two broad bands (R and i?) and one narrow band (NB711; ?c = 7126 ?, ?? = 73 ?). We derive the luminosity functions (LFs) of the LAEs at Ly? luminosity and at UV-continuum (rest frame 1700 ?) luminosity. The LFs show little evolution between z = 3.4 and 4.86 either in Ly? or UV-continuum emission. The amplitude of the LAE LF tends to decline at the bright magnitudes more rapidly than that of the LEG LF at similar redshifts. We calculate the angular correlation function of our LAEs up to ?15? separations. The angular correlation ?(?) is found to increase with decreasing angular separations, showing a clear signal of clustering. It is also found that the distribution of LAEs shows a large-density gradient with a scale of ?15?, which would indicate the existence of a large-scale structure of LAEs on ?20 h-1 Mpc scales. We fit the observed correlation function by A??-0.8 to find A ? = 29 arcsec0.8. The estimated correlation length is r0 = 3.5-0.3+0.3 h-1 Mpc in comoving units (?m = 0.3 and ?? = 0.7), which is slightly larger than the value for z ? 4 LBGs with i? < 26. We calculate the angular correlation function for two subsamples of the 87 LAEs divided by Ly? luminosity, UV-continuum luminosity, and Ly? equivalent width (EW). The Ly?-bright sub-sample shows a larger correlation amplitude than the Ly?-faint subsample, while no significant difference is found for the subsamples divided by UV-continuum luminosity or EW. This may indicate that galaxies with bright Ly? emission are possibly biased against the underlying dark matter halos more strongly than those with bright UV continuum.
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CITATION STYLE
Ouchi, M., Shimasaku, K., Furusawa, H., Miyazaki, M., Doi, M., Hamabe, M., … Yasuda, N. (2003). Subaru Deep Survey. II. Luminosity Functions and Clustering Properties of Lyα Emitters at z = 4.86 in the Subaru Deep Field. The Astrophysical Journal, 582(1), 60–68. https://doi.org/10.1086/344476
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