English

A supernova origin for dust in a high-redshift quasar

Astrophysics 2009-11-10 v1

Abstract

Interstellar dust plays a crucial role in the evolution of the Universe by assisting the formation of molecules, by triggering the formation of the first low-mass stars, and by absorbing stellar ultraviolet-optical light and subsequently re-emitting it at infrared/millimetre wavelengths. Dust is thought to be produced predominantly in the envelopes of evolved (age >1 Gyr), low-mass stars. This picture has, however, recently been brought into question by the discovery of large masses of dust in the host galaxies of quasars at redshift z>6, when the age of the Universe was less than 1 Gyr. Theoretical studies, corroborated by observations of nearby supernova remnants, have suggested that supernovae provide a fast and efficient dust formation environment in the early Universe. Here we report infrared observations of a quasar at redshift 6.2, which are used to obtain directly its dust extinction curve. We then show that such a curve is in excellent agreement with supernova dust models. This result demonstrates a supernova origin for dust in this high-redshift quasar, from which we infer that most of the dust at high redshifts has probably the same origin.

Keywords

Cite

@article{arxiv.astro-ph/0409577,
  title  = {A supernova origin for dust in a high-redshift quasar},
  author = {R. Maiolino and R. Schneider and E. Oliva and S. Bianchi and A. Ferrara and F. Mannucci and M. Pedani and M. Roca Sogorb},
  journal= {arXiv preprint arXiv:astro-ph/0409577},
  year   = {2009}
}

Comments

To Appear in Nature, September 30, 2004

R2 v1 2026-07-22T08:42:53.008Z