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A gravitationally lensed quasar with quadruple images separated by 14.62 arcseconds
Authors:Inada Naohisa  Oguri Masamune  Pindor Bartosz  Hennawi Joseph F  Chiu Kuenley  Zheng Wei  Ichikawa Shin-Ichi  Gregg Michael D  Becker Robert H  Suto Yasushi  Strauss Michael A  Turner Edwin L  Keeton Charles R  Annis James  Castander Francisco J  Eisenstein Daniel J  Frieman Joshua A  Fukugita Masataka  Gunn James E  Johnston David E  Kent Stephen M  Nichol Robert C  Richards Gordon T  Rix Hans-Walter  Sheldon Erin Scott  Bahcall Neta A  Brinkmann J  Ivezić Zeljko  Lamb Don Q  McKay Timothy A  Schneider Donald P  York Donald G
Institution:Department of Physics, School of Science, The University of Tokyo, 113-0033, Japan. inada@utap.phys.s.u-tokyo.ac.jp
Abstract:Gravitational lensing is a powerful tool for the study of the distribution of dark matter in the Universe. The cold-dark-matter model of the formation of large-scale structures (that is, clusters of galaxies and even larger assemblies) predicts the existence of quasars gravitationally lensed by concentrations of dark matter so massive that the quasar images would be split by over 7 arcsec. Numerous searches for large-separation lensed quasars have, however, been unsuccessful. All of the roughly 70 lensed quasars known, including the first lensed quasar discovered, have smaller separations that can be explained in terms of galaxy-scale concentrations of baryonic matter. Although gravitationally lensed galaxies with large separations are known, quasars are more useful cosmological probes because of the simplicity of the resulting lens systems. Here we report the discovery of a lensed quasar, SDSS J1004 + 4112, which has a maximum separation between the components of 14.62 arcsec. Such a large separation means that the lensing object must be dominated by dark matter. Our results are fully consistent with theoretical expectations based on the cold-dark-matter model.
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