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Normal, dust-obscured galaxies in the epoch of reionization

Author

Listed:
  • Y. Fudamoto

    (University of Geneva
    Waseda University
    National Astronomical Observatory of Japan)

  • P. A. Oesch

    (University of Geneva
    University of Copenhagen)

  • S. Schouws

    (Leiden University)

  • M. Stefanon

    (Leiden University)

  • R. Smit

    (Liverpool John Moores University)

  • R. J. Bouwens

    (Leiden University)

  • R. A. A. Bowler

    (University of Oxford)

  • R. Endsley

    (University of Arizona)

  • V. Gonzalez

    (Universidad de Chile
    Centro de Astrofisica y Tecnologias Afines (CATA))

  • H. Inami

    (Hiroshima University)

  • I. Labbe

    (Swinburne University of Technology)

  • D. Stark

    (University of Arizona)

  • M. Aravena

    (Universidad Diego Portales)

  • L. Barrufet

    (University of Geneva)

  • E. da Cunha

    (University of Western Australia
    ARC Centre of Excellence for All Sky Astrophysics in 3 Dimensions (ASTRO 3D))

  • P. Dayal

    (University of Groningen)

  • A. Ferrara

    (Scuola Normale Superiore)

  • L. Graziani

    (Universita di Roma
    INAF/Osservatorio Astrofisico di Arcetri
    INFN)

  • J. Hodge

    (Leiden University)

  • A. Hutter

    (University of Groningen)

  • Y. Li

    (The Pennsylvania State University
    The Pennsylvania State University)

  • I. De Looze

    (Ghent University
    University College London)

  • T. Nanayakkara

    (Swinburne University of Technology)

  • A. Pallottini

    (Scuola Normale Superiore)

  • D. Riechers

    (Cornell University)

  • R. Schneider

    (Universita di Roma
    INAF/Osservatorio Astronomico di Roma
    Sapienza School for Advanced Studies
    INFN)

  • G. Ucci

    (University of Groningen)

  • P. van der Werf

    (Leiden University)

  • C. White

    (University of Arizona)

Abstract

Over the past decades, rest-frame ultraviolet (UV) observations have provided large samples of UV luminous galaxies at redshift (z) greater than 6 (refs. 1–3), during the so-called epoch of reionization. While a few of these UV-identified galaxies revealed substantial dust reservoirs4–7, very heavily dust-obscured sources at these early times have remained elusive. They are limited to a rare population of extreme starburst galaxies8–12 and companions of rare quasars13,14. These studies conclude that the contribution of dust-obscured galaxies to the cosmic star formation rate density at z > 6 is sub-dominant. Recent ALMA and Spitzer observations have identified a more abundant, less extreme population of obscured galaxies at z = 3−6 (refs. 15,16). However, this population has not been confirmed in the reionization epoch so far. Here, we report the discovery of two dust-obscured star-forming galaxies at z = 6.6813 ± 0.0005 and z = 7.3521 ± 0.0005. These objects are not detected in existing rest-frame UV data and were discovered only through their far-infrared [C ii] lines and dust continuum emission as companions to typical UV-luminous galaxies at the same redshift. The two galaxies exhibit lower infrared luminosities and star-formation rates than extreme starbursts, in line with typical star-forming galaxies at z ≈ 7. This population of heavily dust-obscured galaxies appears to contribute 10–25% to the z > 6 cosmic star formation rate density.

Suggested Citation

  • 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 & , 2021. "Normal, dust-obscured galaxies in the epoch of reionization," Nature, Nature, vol. 597(7877), pages 489-492, September.
  • Handle: RePEc:nat:nature:v:597:y:2021:i:7877:d:10.1038_s41586-021-03846-z
    DOI: 10.1038/s41586-021-03846-z
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