Deep, wide-field, global VLBI observations of the Hubble Deep Field North and Flanking Fields
arXiv:1301.1253 · doi:10.1051/0004-6361/201220783
Abstract
Dust is commonly present in weakly radio emitting star-forming galaxies and this dust may obscure the signatures of accreting black holes in these objects. We aim to uncover weak active galactic nuclei, AGN, in the faint radio source population by means of deep high-resolution radio observations. VLBI observations with a world-wide array at unparallelled sensitivity are carried out to assess the nature of the faint radio source population in the Hubble Deep Field North and its flanking fields. Images of twelve compact, AGN-driven radio sources are presented. These represent roughly one quarter of the detectable faint radio source sample. Most, but not all of these low power AGN have X-ray detections. The majority of the faint radio source population must be star-forming galaxies. Faint AGN occur in a variety of (distant) host galaxies, and these are often accompanied by a dust-obscured starburst. Deep, high-resolution VLBI is a unique, powerful technique to assess the occurrence of faint AGN.
Astronomy and Astrophysics, in press
References in corpus (6)
- Multiwavelength study of massive galaxies at z~2. II. Widespread Compton thick AGN and the concurrent growth of black holes and bulges
- Spitzer Quasar and ULIRG evolution study (QUEST): I. The origin of the far infrared continuum of QSOs
- The Star Formation History of the Universe as Revealed by Deep Radio Observations
- The nature of faint Spitzer-selected dust-obscured galaxies
- An evolution of the IR-Radio correlation at very low flux densities?
- Constraining Star Formation and AGN in z~2 Massive Galaxies using High Resolution MERLIN Radio Observations