A sample of 6 C radio sources designed to find objects at redshift > 4 : II — spectrophotometry and emission line properties Matt

نویسندگان

  • Matt J. Jarvis
  • Steve Rawlings
  • Mark Lacy
  • Katherine M. Blundell
  • Andrew J. Bunker
  • Steve Eales
  • Richard Saunders
  • Hyron Spinrad
  • Daniel Stern
  • Chris J. Willott
چکیده

This is the second in a series of three papers which present and interpret basic observational data on the 6C* 151-MHz radio sample: a low-frequency selected sample which exploits filtering criteria based on radio properties (steep spectral index and small angular size) to find radio sources at redshift z > 4 within a 0.133 sr patch of sky. We present results of a programme of optical spectroscopy which has yielded redshifts in the range 0.5∼z∼4.4 for the 29 sources in the sample, all but six of which are secure. We find that the filtering criteria used for 6C* are very effective in excluding the lowredshift, low-luminosity radio sources: the median redshift of 6C* is z ≈ 1.9 compared to z ≈ 1.1 for a complete sample matched in 151-MHz flux density. By combining the emission-line dataset for the 6C* radio sources with those for the 3CRR, 6CE and 7CRS samples we establish that z ≥ 1.75 radio galaxies follow a rough proportionality between Lyαand 151 MHz-luminosity which, like similar correlations seen in samples of lower-redshift radio sources, are indicative of a primary link between the power in the source of the photoionising photons (most likely a hidden quasar nucleus) and the power carried by the radio jets. We argue that radio sources modify their environments and that the range of emission-line properties seen is determined more by the range of source age than by the range in ambient environment. The smallest z > 1.75 radio galaxies have all the properties expected if the size distribution of luminous high-redshift steep-spectrum radio sources reflects a broad range (∼ 2 dex) of source ages with a narrower range (∼ 1.5 dex) of environmental densities, namely: (1) high-ionisation lines, e.g. Lyα, of relatively low luminosity; (2) boosted low-ionisation lines, e.g. CII]; (3) spatially compact emission-line regions; and (4) HI -absorbed Lyα profiles. This is in accord with the idea that all high-redshift, high-luminosity radio sources are triggered in similar environments, presumably recently collapsed massive structures.

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تاریخ انتشار 2007