Access
To read this story in full you will need to login or make a payment (see right).
Letters to Nature
Nature 417, 923-925 (27 June 2002) | doi:10.1038/nature00794; Received 20 February 2002; Accepted 26 April 2002
Magnification of light from many distant quasars by gravitational lenses
J. Stuart B. Wyithe & Abraham Loeb
- Astronomy Department, Harvard University, 60 Garden Street, Cambridge, Massachusetts 02138, USA
Correspondence to: Abraham Loeb Correspondence and requests for materials should be addressed to A.L. (e-mail: Email: aloeb@cfa.harvard.edu).
Abstract
Exceptionally bright quasars with redshifts up to z = 6.28 have recently been discovered1. Quasars are thought to be powered by the accretion of gas onto supermassive black holes at the centres of galaxies. Their maximum (Eddington) luminosity depends on the mass of the black hole, and the brighter quasars are inferred to have black holes with masses of more than a few billion solar masses. The existence of such massive black holes poses a challenge to models for the formation of structures in the early Universe2, 3, as it requires their formation within one billion years of the Big Bang. Here we show that up to one-third of known quasars with z
6 will have had their observed flux magnified by a factor of ten or more, as a consequence of gravitational lensing by galaxies along the line of sight. The inferred abundance of quasar host galaxies, as well as the luminosity density provided by the quasars, has therefore been substantially overestimated.
To read this story in full you will need to login or make a payment (see right).
