期刊
ASTROPHYSICAL JOURNAL
卷 578, 期 2, 页码 702-707出版社
IOP PUBLISHING LTD
DOI: 10.1086/342610
关键词
cosmology : theory; intergalactic medium; large-scale structure of universe; quasars : absorption lines
The recent discovery of bright quasars at redshift z similar to 6 suggests that black holes (BHs) with masses in excess of similar to10(9) M. have already assembled at a very early stage in the evolution of the universe. An alternative interpretation is that these quasars are powered by less massive BHs, but their fluxes are strongly magnified through gravitational lensing by intervening galaxies. Here we analyze the flux distribution of the Lyalpha emission of the quasar with the highest known redshift, SDSS 1030+0524, at z = 6.28. We show that this object could not have been magnified by lensing by more than a factor of similar to5. The constraint arises from the large observed size, similar to30 (comoving) Mpc, of the ionized region around this quasar and relies crucially only on the assumption that the quasar is embedded in a largely neutral intergalactic medium. Based on the line/continuum ratio of SDSS 1030+0524, we further argue that this quasar also cannot be beamed by a significant factor. We conclude that the minimum mass for its resident BH is 4 x 10(8) M. (for magnification by a factor of 5); if the mass is this low, then the quasars had to switch on prior to redshift z(f) greater than or similar to9. From the size of the ionized region, we are also able to place an absolute lower bound on the age of this quasar at t(Q) > 2 x 10(7) yr.
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