Literature DB >> 22699613

The intense starburst HDF 850.1 in a galaxy overdensity at z ≈ 5.2 in the Hubble Deep Field.

Fabian Walter1, Roberto Decarli, Chris Carilli, Frank Bertoldi, Pierre Cox, Elisabete Da Cunha, Emanuele Daddi, Mark Dickinson, Dennis Downes, David Elbaz, Richard Ellis, Jacqueline Hodge, Roberto Neri, Dominik A Riechers, Axel Weiss, Eric Bell, Helmut Dannerbauer, Melanie Krips, Mark Krumholz, Lindley Lentati, Roberto Maiolino, Karl Menten, Hans-Walter Rix, Brant Robertson, Hyron Spinrad, Dan P Stark, Daniel Stern.   

Abstract

The Hubble Deep Field provides one of the deepest multiwavelength views of the distant Universe and has led to the detection of thousands of galaxies seen throughout cosmic time. An early map of the Hubble Deep Field at a wavelength of 850 micrometres, which is sensitive to dust emission powered by star formation, revealed the brightest source in the field, dubbed HDF 850.1 (ref. 2). For more than a decade, and despite significant efforts, no counterpart was found at shorter wavelengths, and it was not possible to determine its redshift, size or mass. Here we report a redshift of z = 5.183 for HDF 850.1, from a millimetre-wave molecular line scan. This places HDF 850.1 in a galaxy overdensity at z ≈ 5.2, corresponding to a cosmic age of only 1.1 billion years after the Big Bang. This redshift is significantly higher than earlier estimates and higher than those of most of the hundreds of submillimetre-bright galaxies identified so far. The source has a star-formation rate of 850 solar masses per year and is spatially resolved on scales of 5 kiloparsecs, with an implied dynamical mass of about 1.3 × 10(11) solar masses, a significant fraction of which is present in the form of molecular gas. Despite our accurate determination of redshift and position, a counterpart emitting starlight remains elusive.

Year:  2012        PMID: 22699613     DOI: 10.1038/nature11073

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  2 in total

1.  A kiloparsec-scale hyper-starburst in a quasar host less than 1 gigayear after the Big Bang.

Authors:  Fabian Walter; Dominik Riechers; Pierre Cox; Roberto Neri; Chris Carilli; Frank Bertoldi; Axel Weiss; Roberto Maiolino
Journal:  Nature       Date:  2009-02-05       Impact factor: 49.962

2.  A massive protocluster of galaxies at a redshift of z ≈ 5.3.

Authors:  Peter L Capak; Dominik Riechers; Nick Z Scoville; Chris Carilli; Pierre Cox; Roberto Neri; Brant Robertson; Mara Salvato; Eva Schinnerer; Lin Yan; Grant W Wilson; Min Yun; Francesca Civano; Martin Elvis; Alexander Karim; Bahram Mobasher; Johannes G Staguhn
Journal:  Nature       Date:  2011-01-12       Impact factor: 49.962

  2 in total
  7 in total

1.  Astronomy: An infant giant.

Authors:  Alberto D Bolatto
Journal:  Nature       Date:  2012-06-13       Impact factor: 49.962

Review 2.  High-redshift star formation in the Atacama large millimetre/submillimetre array era.

Authors:  J A Hodge; E da Cunha
Journal:  R Soc Open Sci       Date:  2020-12-09       Impact factor: 2.963

3.  Dusty starburst galaxies in the early Universe as revealed by gravitational lensing.

Authors:  J D Vieira; D P Marrone; S C Chapman; C De Breuck; Y D Hezaveh; A Weiβ; J E Aguirre; K A Aird; M Aravena; M L N Ashby; M Bayliss; B A Benson; A D Biggs; L E Bleem; J J Bock; M Bothwell; C M Bradford; M Brodwin; J E Carlstrom; C L Chang; T M Crawford; A T Crites; T de Haan; M A Dobbs; E B Fomalont; C D Fassnacht; E M George; M D Gladders; A H Gonzalez; T R Greve; B Gullberg; N W Halverson; F W High; G P Holder; W L Holzapfel; S Hoover; J D Hrubes; T R Hunter; R Keisler; A T Lee; E M Leitch; M Lueker; D Luong-Van; M Malkan; V McIntyre; J J McMahon; J Mehl; K M Menten; S S Meyer; L M Mocanu; E J Murphy; T Natoli; S Padin; T Plagge; C L Reichardt; A Rest; J Ruel; J E Ruhl; K Sharon; K K Schaffer; L Shaw; E Shirokoff; J S Spilker; B Stalder; Z Staniszewski; A A Stark; K Story; K Vanderlinde; N Welikala; R Williamson
Journal:  Nature       Date:  2013-03-13       Impact factor: 49.962

4.  A dust-obscured massive maximum-starburst galaxy at a redshift of 6.34.

Authors:  Dominik A Riechers; C M Bradford; D L Clements; C D Dowell; I Pérez-Fournon; R J Ivison; C Bridge; A Conley; Hai Fu; J D Vieira; J Wardlow; J Calanog; A Cooray; P Hurley; R Neri; J Kamenetzky; J E Aguirre; B Altieri; V Arumugam; D J Benford; M Béthermin; J Bock; D Burgarella; A Cabrera-Lavers; S C Chapman; P Cox; J S Dunlop; L Earle; D Farrah; P Ferrero; A Franceschini; R Gavazzi; J Glenn; E A Gonzalez Solares; M A Gurwell; M Halpern; E Hatziminaoglou; A Hyde; E Ibar; A Kovács; M Krips; R E Lupu; P R Maloney; P Martinez-Navajas; H Matsuhara; E J Murphy; B J Naylor; H T Nguyen; S J Oliver; A Omont; M J Page; G Petitpas; N Rangwala; I G Roseboom; D Scott; A J Smith; J G Staguhn; A Streblyanska; A P Thomson; I Valtchanov; M Viero; L Wang; M Zemcov; J Zmuidzinas
Journal:  Nature       Date:  2013-04-18       Impact factor: 49.962

5.  Astronomy: A cosmic growth spurt in an infant galaxy.

Authors:  Desika Narayanan; Chris Carilli
Journal:  Nature       Date:  2013-04-18       Impact factor: 49.962

6.  Galaxy growth in a massive halo in the first billion years of cosmic history.

Authors:  D P Marrone; J S Spilker; C C Hayward; J D Vieira; M Aravena; M L N Ashby; M B Bayliss; M Béthermin; M Brodwin; M S Bothwell; J E Carlstrom; S C Chapman; Chian-Chou Chen; T M Crawford; D J M Cunningham; C De Breuck; C D Fassnacht; A H Gonzalez; T R Greve; Y D Hezaveh; K Lacaille; K C Litke; S Lower; J Ma; M Malkan; T B Miller; W R Morningstar; E J Murphy; D Narayanan; K A Phadke; K M Rotermund; J Sreevani; B Stalder; A A Stark; M L Strandet; M Tang; A Weiß
Journal:  Nature       Date:  2017-12-06       Impact factor: 49.962

7.  Normal, dust-obscured galaxies in the epoch of reionization.

Authors:  Y Fudamoto; P A Oesch; S Schouws; M Stefanon; R Smit; R J Bouwens; R A A Bowler; R Endsley; V Gonzalez; H Inami; I Labbe; D Stark; M Aravena; L Barrufet; E da Cunha; P Dayal; A Ferrara; L Graziani; J Hodge; A Hutter; Y Li; I De Looze; T Nanayakkara; A Pallottini; D Riechers; R Schneider; G Ucci; P van der Werf; C White
Journal:  Nature       Date:  2021-09-22       Impact factor: 49.962

  7 in total

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