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      Quasar clustering in a galaxy and quasar formation model based on ultra high-resolution N-body simulations

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          Abstract

          We investigate clustering properties of quasars using a new version of our semi-analytic model of galaxy and quasar formation with state-of-the-art cosmological N-body simulations. In this study, we assume that a major merger of galaxies triggers cold gas accretion on to a supermassive black hole and quasar activity. Our model can reproduce the downsizing trend of the evolution of quasars. We find that the median mass of quasar host dark matter haloes increases with cosmic time by an order of magnitude from z=4 (a few 1e+11 Msun) to z=1 (a few 1e+12 Msun), and depends only weakly on the quasar luminosity. Deriving the quasar bias through the quasar--galaxy cross-correlation function in the model, we find that the quasar bias does not depend on the quasar luminosity, similar to observed trends. This result reflects the fact that quasars with a fixed luminosity have various Eddington ratios and thus have various host halo masses that primarily determine the quasar bias. We also show that the quasar bias increases with redshift, which is in qualitative agreement with observations. Our bias value is lower than the observed values at high redshifts, implying that we need some mechanisms that make quasars inactive in low-mass haloes and/or that make them more active in high-mass haloes.

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          SEGMENTATION OF BEEF JOINT IMAGES USING HISTOGRAM THRESHOLDING

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            Author and article information

            Journal
            2015-12-01
            Article
            10.1093/mnrasl/slv169
            1512.00458
            47e596bb-e154-4d4c-9614-f3a95d2d89c7

            http://arxiv.org/licenses/nonexclusive-distrib/1.0/

            History
            Custom metadata
            Monthly Notices of the Royal Astronomical Society: Letters, Volume 456, Issue 1, p.L30-L34 (2016)
            6 pages, 3 figures, to appear in MNRAS Letters
            astro-ph.GA astro-ph.CO

            Cosmology & Extragalactic astrophysics,Galaxy astrophysics
            Cosmology & Extragalactic astrophysics, Galaxy astrophysics

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