Spectral Signature of Cosmological Infall of Gas Around the First Quasars
arXiv:astro-ph/0209515 · doi:10.1038/nature01330
Abstract
Recent observations have shown that, only a billion years after the Big Bang, the Universe was already lit up by bright quasars fuelled by the infall of gas onto supermassive black holes. The masses of these early black holes are inferred from their luminosities to be > 10^9 solar masses, which is a difficult theoretical challenge to explain. Like nearby quasars, the early objects could have formed in the central cores of massive host galaxies. The formation of these hosts could be explained if, like local large galaxies, they were assembled gravitationally inside massive (> 10^12 solar mass) halos of dark matter. There has hitherto been no observational evidence for the presence of these massive hosts or their surrounding halos. Here we show that the cosmic gas surrounding each halo must respond to its strong gravitational pull, where absorption by the infalling hydrogen produces a distinct spectral signature. That signature can be seen in recent data.
14 pages, 2 figures, accepted for publication. Title and abstract now match accepted version
References in corpus (5)
- The slope of the black-hole mass versus velocity dispersion correlation
- The Detectability of High Redshift Lyman Alpha Emission Lines Prior to the Reionization of the Universe
- A Physical Model for the Luminosity Function of High-Redshift Quasars
- Gravitational lenses magnify up to one third of the most distant quasars
- A statistical detection of gamma-ray emission from galaxy clusters: implications for the gamma-ray background and structure formation
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