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相关论文: The density structure around quasars from optical …

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We explore how the local environment is related to the redshift, type, and luminosity of active galactic nuclei (AGN). Recent simulations and observations are converging on the view that the extreme luminosity of quasars is fueled in major…

天体物理学 · 物理学 2009-11-13 Natalie E. Strand , Robert J. Brunner , Adam D. Myers

(Abridged) We detect the large-scale structure of Lya emission in the Universe at redshifts z=2-3.5 by measuring the cross-correlation of Lya surface brightness with quasars in SDSS/BOSS. We use a million spectra targeting Luminous Red…

Estimates of the metagalactic hydrogen ionization rate from the Lyman-alpha forest opacity in QSO absorption spectra depend on the complex density distribution of neutral hydrogen along the line-of-sight. We use a large suite of high…

天体物理学 · 物理学 2009-11-10 James S. Bolton , Martin G. Haehnelt , Matteo Viel , Volker Springel

In this paper we examine magnitudes of quasars as a function of redshift in different frequency ranges (u,g,r,i,z). We show that on the smoothed curves mag(Z) in frequency ranges u,g,r there are characteristic features both similar for all…

综合物理 · 物理学 2012-12-27 Iurii Kudriavtcev

For the first time spectroscopic galaxy redshift surveys are reaching the scales where galaxies can be studied together with the nearest quasars. This gives an opportunity to study the dependence between the activity of a quasar and its…

宇宙学与河外天体物理 · 物理学 2015-05-13 H. Lietzen , P. Heinamaki , P. Nurmi , E. Tago , E. Saar , J. Liivamagi , E. Tempel , M. Einasto , J. Einasto , M. Gramann , L. O. Takalo

Damped Lyman-alpha absorbers are believed to be associated with galactic disks. We show that gravitational lensing can therefore affect the statistics of these systems. First, the magnification bias due to lensing raises faint QSOs above a…

天体物理学 · 物理学 2009-10-28 Matthias Bartelmann , Abraham Loeb

Characterizing high-z quasar environments is key to understanding the co-evolution of quasars and the surrounding galaxies. To restrict their global picture, we statistically examine the g-dropout galaxy overdensity distribution around 570…

We provide a simple theoretical model for the quasar luminosity function at high redshifts that naturally reproduces the statistical properties of the luminous SDSS quasar sample at redshifts z~4.3 and z>5.7. Our model is based on the…

天体物理学 · 物理学 2009-11-07 Stuart Wyithe , Abraham Loeb

This is the fourth paper in a series aimed at finding high-redshift quasars from five-color imaging data taken along the Celestial Equator by the SDSS. during its commissioning phase. In this paper, we use the color-selected sample of 39…

Proximity zones of high-redshift quasars are unique probes of their central supermassive black holes as well as the intergalactic medium in the last stages of reionization. We present 22 new measurements of proximity zones of quasars with…

A number of deep, wide-field, near-infrared surveys employing new infrared cameras on 4m-class telescopes are about to commence. These surveys have the potential to determine the fraction of luminous dust-obscured quasars that may have…

天体物理学 · 物理学 2009-11-11 Natasha Maddox , Paul C. Hewett

We analyze the Parkes quarter-Jansky flat-spectrum sample of QSOs in terms of space density, including the redshift distribution, the radio luminosity function, and the evidence for a redshift cutoff. With regard to the luminosity function,…

天体物理学 · 物理学 2009-11-10 J. V. Wall , C. A. Jackson , P. A. Shaver , I. M. Hook , K. I. Kellermann

We trace the cosmic web at redshifts 1.0 <= z <= 1.8 using the quasar data from the SDSS DR7 QSO catalogue (Schneider et al. 2010). We apply a friend-of-friend (FoF) algorithm to the quasar and random catalogues to determine systems at a…

宇宙学与河外天体物理 · 物理学 2014-09-05 Maret Einasto , Erik Tago , Heidi Lietzen , Changbom Park , Pekka Heinamaki , Enn Saar , Hyunmi Song , Lauri Juhan Liivamagi , Jaan Einasto

We have obtained high signal:to:noise optical spectroscopy at 5\AA\ resolution of 27 quasars from the APM z$>$4 quasar survey. The spectra have been analyzed to create new samples of high redshift Lyman-limit and damped Lyman-$\alpha$…

天体物理学 · 物理学 2007-05-23 L. J. Storrie-Lombardi , R. G. McMahon , M. J. Irwin , C. Hazard

We have modelled the evolution of the number of Ly_alpha absorbers with redshift, resulting from the evolution of the ionising background and the Hubble expansion. The contribution of quasars (QSOs) and galaxies to the HI-ionising UV…

天体物理学 · 物理学 2009-11-06 Simone Bianchi , Stefano Cristiani , Tae-Sun Kim

We report the detection of significant Lyman continuum flux in the composite spectrum of 29 Lyman break galaxies (LBGs) with redshifts <z> = 3.40+/-0.09. After correction for opacity due to intervening absorption using a new composite QSO…

天体物理学 · 物理学 2009-10-31 C. C. Steidel , M. Pettini , K. L Adelberger

We present results from end-to-end simulations of observations designed to constrain the rate of change in the expansion history of the Universe using the redshift drift of the Lyman-$\alpha$ forest absorption lines along the lines-of-sight…

宇宙学与河外天体物理 · 物理学 2022-07-19 Chenxing Dong , Anthony Gonzalez , Stephen Eikenberry , Sarik Jeram , Manunya Likamonsavad , Jochen Liske , Deno Stelter , Amanda Townsend

We study the cosmic web at redshifts 1.0 <= z <= 1.8 using quasar systems based on quasar data from the SDSS DR7 QSO catalogue. Quasar systems were determined with a friend-of-friend (FoF) algorithm at a series of linking lengths. At the…

宇宙学与河外天体物理 · 物理学 2014-09-05 Maret Einasto

We present a novel method to investigate cosmic reionization, using joint spectral information on high redshift Lyman Alpha Emitters (LAE) and quasars (QSOs). Although LAEs have been proposed as reionization probes, their use is hampered by…

宇宙学与河外天体物理 · 物理学 2015-06-04 S. Baek , A. Ferrara , B. Semelin

We present J-H-K' photometry for a sample of 45 high redshift quasars found by the Sloan Digital Sky Survey. The sample was originally selected on the basis of optical colors and spans a redshift range from 3.6 to 5.03. Our photometry…