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371 peer-reviewed articles • 73,084 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Trinity VI: connection between galaxy star formation rates and supermassive black hole accretion rates from z = 0 − 104.77Citations (PDF)
2Flares in the changing look AGN Mrk 590 – II. Deep X-ray observations reveal a Comptonizing inner accretion flow4.71Citations (PDF)
3Direct Evidence for Active Galactic Nuclei Feedback from Fast Molecular Outflows in Reionization-era Quasars
Astrophysical Journal, 2025, 982, 72
5.210Citations (PDF)
4Lack of Rest-frame Ultraviolet Variability in Little Red Dots Based on HST and JWST Observations11.423Citations (PDF)
5JWST NIRCam Simulations and Observations of AGN Ionization Cones in Cosmic Noon Galaxies
Astrophysical Journal, 2025, 984, 13
5.20Citations (PDF)
6Enhanced Merger Fractions in a Reionization-era Protocluster0.81Citations (PDF)
7Discovery and characterization of 25 new quasars at 4.6 < z < 6.9 from wide-field multiband surveys5.912Citations (PDF)
8Milliarcsecond astrometric oscillations in active galactic nuclei as a precursor of multi-messenger gravitational wave events5.91Citations (PDF)
9A unique window into the epoch of reionisation: A double-peaked Lyman-α emitter in the proximity zone of a quasar at z ∼ 6.65.96Citations (PDF)
10MAMMOTH-Subaru. III. Lyα Halo Identified by Stacking ∼3300 Lyα Emitters at z = 2.2–2.3
Astrophysical Journal, 2024, 961, 63
5.212Citations (PDF)
11A Massive Protocluster Anchored by a Luminous Quasar at z = 6.6311.412Citations (PDF)
12The Emergence of a Brightest Cluster Galaxy in a Protocluster Core at z = 2.24
Astrophysical Journal, 2024, 963, 21
5.210Citations (PDF)
13A quasar-galaxy merger at z ∼ 6.2: Black hole mass and quasar properties from the NIRSpec spectrum5.929Citations (PDF)
14Trinity – III. Quasar luminosity functions decomposed by halo, galaxy, and black hole masses as well as Eddington ratios from z = 0–104.711Citations (PDF)
15Supermassive black holes are growing slowly by z∼54.710Citations (PDF)
16A Spatially Resolved [C ii] Survey of 31 z ∼ 7 Massive Galaxies Hosting Luminous Quasars
Astrophysical Journal, 2024, 968, 9
5.225Citations (PDF)
17Trinity IV: predictions for supermassive black holes at z ≳ 64.79Citations (PDF)
18Damping wing-like features in the stacked Ly α forest: Potential neutral hydrogen islands at z < 63.953Citations (PDF)
19A quasar-galaxy merger at z ∼ 6.2: Rapid host growth via the accretion of two massive satellite galaxies5.923Citations (PDF)
20Flares in the changing look AGN Mrk 590 – I. The UV response to X-ray outbursts suggests a more complex reprocessing geometry than a standard disc4.716Citations (PDF)
21(Nearly) Model-independent Constraints on the Neutral Hydrogen Fraction in the Intergalactic Medium at z ∼ 5–7 Using Dark Pixel Fractions in Lyα and Lyβ Forests
Astrophysical Journal, 2023, 942, 59
5.283Citations (PDF)
22The Identification of a Dusty Multiarm Spiral Galaxy at z = 3.06 with JWST and ALMA11.443Citations (PDF)
23The Pan-STARRS1 z > 5.6 Quasar Survey. III. The z ≈ 6 Quasar Luminosity Function
Astrophysical Journal, 2023, 943, 67
5.242Citations (PDF)
24ALMA confirmation of an obscured hyperluminous radio-loud AGN at z = 6.853 associated with a dusty starburst in the 1.5 deg2 COSMOS field4.756Citations (PDF)
25A Survey for High-redshift Gravitationally Lensed Quasars and Close Quasar Pairs. I. The Discoveries of an Intermediately Lensed Quasar and a Kiloparsec-scale Quasar Pair at z ∼ 5
Astronomical Journal, 2023, 165, 191
5.024Citations (PDF)
26Inspiraling streams of enriched gas observed around a massive galaxy 11 billion years ago
Science, 2023, 380, 494-498
36.336Citations (PDF)
27Quasars and the Intergalactic Medium at Cosmic Dawn30.4287Citations (PDF)
28The Spitzer Coverage of HSC-Deep with IRAC for Z studies (SHIRAZ). I. IRAC Mosaics
Astronomical Journal, 2023, 166, 25
5.07Citations (PDF)
29A SPectroscopic Survey of Biased Halos in the Reionization Era (ASPIRE): JWST Reveals a Filamentary Structure around a z = 6.61 Quasar11.489Citations (PDF)
30A SPectroscopic Survey of Biased Halos in the Reionization Era (ASPIRE): A First Look at the Rest-frame Optical Spectra of z > 6.5 Quasars Using JWST11.472Citations (PDF)
31Trinity II: The luminosity-dependent bias of the supermassive black hole mass–galaxy mass relation for bright quasars at z  = 63.919Citations (PDF)
32Predicting the Yields of z > 6.5 Quasar Surveys in the Era of Roman and Rubin
Astrophysical Journal, 2023, 956, 52
5.213Citations (PDF)
33JWST CEERS and JADES Active Galaxies at z = 4–7 Violate the Local M •–M ⋆ Relation at >3σ: Implications for Low-mass Black Holes and Seeding Models11.4210Citations (PDF)
34XQz5: a new ultraluminous z ∼ 5 quasar legacy sample4.78Citations (PDF)
35Ultraluminous high-redshift quasars from SkyMapper – II. New quasars and the bright end of the luminosity function4.724Citations (PDF)
36Metallicity in Quasar Broad-line Regions at Redshift ∼ 6
Astrophysical Journal, 2022, 925, 121
5.238Citations (PDF)
37Deep XMM-Newton Observations of an X-ray Weak Broad Absorption Line Quasar at z = 6.511.416Citations (PDF)
38Revisiting the Lensed Fraction of High-redshift Quasars
Astrophysical Journal, 2022, 925, 169
5.225Citations (PDF)
39A Mock Catalog of Gravitationally-lensed Quasars for the LSST Survey
Astronomical Journal, 2022, 163, 139
5.020Citations (PDF)
40The Mass–Metallicity Relation at Cosmic Noon in Overdense Environments: First Results from the MAMMOTH–Grism HST Slitless Spectroscopic Survey
Astrophysical Journal, 2022, 926, 70
5.237Citations (PDF)
41ALMA 200 pc Imaging of a z ∼ 7 Quasar Reveals a Compact, Disk-like Host Galaxy
Astrophysical Journal, 2022, 927, 21
5.253Citations (PDF)
42The Seventeenth Data Release of the Sloan Digital Sky Surveys: Complete Release of MaNGA, MaStar, and APOGEE-2 Data8.01,229Citations (PDF)
43Molecular gas inz∼ 6 quasar host galaxies5.946Citations (PDF)
44Submillimetre galaxies in two massive protoclusters at z = 2.24: witnessing the enrichment of extreme starbursts in the outskirts of HAE density peaks4.726Citations (PDF)
45Radio and far-IR emission associated with a massive star-forming galaxy candidate atz≃ 6.8: a radio-loud AGN in the reionization era?4.732Citations (PDF)
46Quasar UV Luminosity Function at 3.5 < z < 5.0 from SDSS Deep Imaging Data
Astrophysical Journal, 2022, 928, 172
5.210Citations (PDF)
47Hydrogen reionization ends by z = 5.3: Lyman-α optical depth measured by the XQR-30 sample4.7296Citations (PDF)
48Chemical abundance of z ~ 6 quasar broad-line regions in the XQR-30 sample4.731Citations (PDF)
49Exploring the Radio Spectral Energy Distribution of the Ultraluminous Radio-quiet Quasar SDSS J0100+2802 at Redshift 6.3
Astrophysical Journal, 2022, 929, 69
5.24Citations (PDF)
50Connecting Low- and High-redshift Weak Emission-line Quasars via Hubble Space Telescope Spectroscopy of Lyα Emission
Astrophysical Journal, 2022, 929, 78
5.215Citations (PDF)
51First Census of Gas-phase Metallicity Gradients of Star-forming Galaxies in Overdense Environments at Cosmic Noon11.426Citations (PDF)
52Measuring the Density Fields around Bright Quasars at z ∼ 6 with XQR-30 Spectra
Astrophysical Journal, 2022, 931, 29
5.224Citations (PDF)
53Long Dark Gaps in the Lyβ Forest at z < 6: Evidence of Ultra-late Reionization from XQR-30 Spectra
Astrophysical Journal, 2022, 932, 76
5.292Citations (PDF)
54Definitive upper bound on the negligible contribution of quasars to cosmic reionization
Nature Astronomy, 2022, 6, 850-856
12.848Citations (PDF)
55Paving the way forEuclid and JWST via probabilistic selection of high-redshift quasars4.711Citations (PDF)
56Trinity I: self-consistently modelling the dark matter halo–galaxy–supermassive black hole connection from z = 0–104.771Citations (PDF)
57Overview of the Instrumentation for the Dark Energy Spectroscopic Instrument
Astronomical Journal, 2022, 164, 207
5.0435Citations (PDF)
58The X–shooter/ALMA Sample of Quasars in the Epoch of Reionization. II. Black Hole Masses, Eddington Ratios, and the Formation of the First Quasars
Astrophysical Journal, 2022, 941, 106
5.2104Citations (PDF)
59Chandra Detection of Three X-Ray Bright Quasars at z > 5
Astrophysical Journal, 2021, 906, 135
5.212Citations (PDF)
60Statistical Correlation between the Distribution of Lyα Emitters and Intergalactic Medium H i at z ∼ 2.2 Mapped by the Subaru/Hyper Suprime-Cam
Astrophysical Journal, 2021, 907, 3
5.226Citations (PDF)
61A Luminous Quasar at Redshift 7.64211.4441Citations (PDF)
62Strong Mg ii and Fe ii Absorbers at 2.2 < z < 6.0
Astrophysical Journal, 2021, 906, 32
5.220Citations (PDF)
63Revealing the Accretion Physics of Supermassive Black Holes at Redshift z ∼ 7 with Chandra and Infrared Observations
Astrophysical Journal, 2021, 908, 53
5.262Citations (PDF)
64The Discovery of a Highly Accreting, Radio-loud Quasar at z = 6.82
Astrophysical Journal, 2021, 909, 80
5.286Citations (PDF)
65A Chandra survey of z ≥ 4.5 quasars4.711Citations (PDF)
66The Kinematics of z ≳ 6 Quasar Host Galaxies
Astrophysical Journal, 2021, 911, 141
5.2120Citations (PDF)
67Probing the He ii re-Ionization ERa via Absorbing C iv Historical Yield (HIERACHY) I: A strong outflow from a z ∼ 4.7 quasar4.75Citations (PDF)
68ALMA multiline survey of the ISM in two quasar host–companion galaxy pairs atz> 65.957Citations (PDF)
69Spectroscopic Confirmation of Two Extremely Massive Protoclusters, BOSS1244 and BOSS1542, at z = 2.24
Astrophysical Journal, 2021, 915, 32
5.228Citations (PDF)
70Random Forests as a Viable Method to Select and Discover High-redshift Quasars
Astronomical Journal, 2021, 162, 72
5.031Citations (PDF)
71ALMA Observations of the Sub-kpc Structure of the Host Galaxy of a z = 6.5 Lensed Quasar: A Rotationally Supported Hyper-Starburst System at the Epoch of Reionization
Astrophysical Journal, 2021, 917, 99
5.230Citations (PDF)
72A [C ii] 158 μm emitter associated with an O i absorber at the end of the reionization epoch
Nature Astronomy, 2021, 5, 1110-1117
12.811Citations (PDF)
73A Closer Look at Two of the Most Luminous Quasars in the Universe
Astrophysical Journal, 2021, 906, 12
5.26Citations (PDF)
74A Candidate Kiloparsec-scale Quasar Pair at z = 5.6611.428Citations (PDF)
75Chasing the Tail of Cosmic Reionization with Dark Gap Statistics in the Lyα Forest over 5 < z < 6
Astrophysical Journal, 2021, 923, 223
5.275Citations (PDF)
76Probing Early Supermassive Black Hole Growth and Quasar Evolution with Near-infrared Spectroscopy of 37 Reionization-era Quasars at 6.3 < z ≤ 7.64
Astrophysical Journal, 2021, 923, 262
5.2160Citations (PDF)
77Discovery of a Protocluster Core Associated with an Enormous Lya Nebula at z = 2.3
Astrophysical Journal, 2021, 922, 236
5.212Citations (PDF)
78C iv Emission-line Properties and Uncertainties in Black Hole Mass Estimates of z ∼ 3.5 Quasars
Astrophysical Journal, 2020, 896, 40
5.212Citations (PDF)
79A thirty-four billion solar mass black hole in SMSS J2157–3602, the most luminous known quasar4.718Citations (PDF)
80Pōniuā‘ena: A Luminous z = 7.5 Quasar Hosting a 1.5 Billion Solar Mass Black Hole11.4343Citations (PDF)
81Probing the Full CO Spectral Line Energy Distribution (SLED) in the Nuclear Region of a Quasar-starburst System at z = 6.003
Astrophysical Journal, 2020, 889, 162
5.240Citations (PDF)
82A Significantly Neutral Intergalactic Medium Around the Luminous z = 7 Quasar J0252–0503
Astrophysical Journal, 2020, 896, 23
5.2187Citations (PDF)
83The 16th Data Release of the Sloan Digital Sky Surveys: First Release from the APOGEE-2 Southern Survey and Full Release of eBOSS Spectra8.01,289Citations (PDF)
84Deep Hubble Space Telescope Imaging on the Extended Lyα Emission of a QSO at z = 2.19 with a Damped Lyman Alpha System as a Natural Coronagraph11.44Citations (PDF)
85Lyman continuum escape fraction in Ly α emitters at z ≃ 3.13.931Citations (PDF)
86MAMMOTH: confirmation of two massive galaxy overdensities at z = 2.24 with Hα emitters4.727Citations (PDF)
87Spectroscopy of Broad Absorption Line Quasars at 3 ≲ Z ≲ 5. I. Evidence for Quasar Winds Shaping Broad/Narrow Emission Line Regions
Astrophysical Journal, 2020, 893, 95
5.210Citations (PDF)
88SCUBA2 High Redshift Bright Quasar Survey: Far-infrared Properties and Weak-line Features
Astrophysical Journal, 2020, 900, 12
5.218Citations (PDF)
89Detecting and Characterizing Young Quasars. I. Systemic Redshifts and Proximity Zone Measurements
Astrophysical Journal, 2020, 900, 37
5.294Citations (PDF)
90Limits to Rest-frame Ultraviolet Emission from Far-infrared-luminous z ≃ 6 Quasar Hosts
Astrophysical Journal, 2020, 900, 21
5.234Citations (PDF)
91X-Ray Observations of a [C ii]-bright, z = 6.59 Quasar/Companion System
Astrophysical Journal, 2020, 900, 189
5.224Citations (PDF)
92Ionized and Atomic Interstellar Medium in the z = 6.003 Quasar SDSS J2310+1855
Astrophysical Journal, 2020, 900, 131
5.249Citations (PDF)
93The Magellan M2FS Spectroscopic Survey of High-redshift Galaxies: A Sample of 260 Lyα Emitters at Redshift z ≈ 5.7
Astrophysical Journal, 2020, 903, 4
5.224Citations (PDF)
94Measurements of the z ∼ 6 Intergalactic Medium Optical Depth and Transmission Spikes Using a New z > 6.3 Quasar Sample
Astrophysical Journal, 2020, 904, 26
5.2130Citations (PDF)
95The X-SHOOTER/ALMA Sample of Quasars in the Epoch of Reionization. I. NIR Spectral Modeling, Iron Enrichment, and Broad Emission Line Properties
Astrophysical Journal, 2020, 905, 51
5.299Citations (PDF)
96No Evidence for [C ii] Halos or High-velocity Outflows in z ≳ 6 Quasar Host Galaxies
Astrophysical Journal, 2020, 904, 131
5.269Citations (PDF)
97Kiloparsec-scale ALMA Imaging of [C ii] and Dust Continuum Emission of 27 Quasar Host Galaxies at z ∼ 6
Astrophysical Journal, 2020, 904, 130
5.2152Citations (PDF)
98A complete search for redshift z ≳ 6.5 quasars in the VIKING survey4.75Citations (PDF)
99The Sloan Digital Sky Survey Reverberation Mapping Project: Photometric g and i Light Curves8.07Citations (PDF)
100The z = 7.54 Quasar ULAS J1342+0928 Is Hosted by a Galaxy Merger11.439Citations (PDF)
101Spatially Resolved Interstellar Medium and Highly Excited Dense Molecular Gas in the Most Luminous Quasar at z = 6.327
Astrophysical Journal, 2019, 880, 2
5.276Citations (PDF)
102The Extremely Luminous Quasar Survey in the Pan-STARRS 1 Footprint (PS-ELQS)8.029Citations (PDF)
103Exploring Reionization-era Quasars. III. Discovery of 16 Quasars at 6.4 ≲ z ≲ 6.9 with DESI Legacy Imaging Surveys and the UKIRT Hemisphere Survey and Quasar Luminosity Function at z ∼ 6.7
Astrophysical Journal, 2019, 884, 30
5.2164Citations (PDF)
104Resolved [C ii] Emission from z > 6 Quasar Host–Companion Galaxy Pairs
Astrophysical Journal, 2019, 882, 10
5.271Citations (PDF)
105Exploring Reionization-era Quasars. IV. Discovery of Six New z ≳ 6.5 Quasars with DES, VHS, and unWISE Photometry
Astronomical Journal, 2019, 157, 236
5.0111Citations (PDF)
106ALMA and HST Kiloparsec-scale Imaging of a Quasar-galaxy Merger at Z ≈ 6.2
Astrophysical Journal, 2019, 880, 157
5.252Citations (PDF)
107Far-infrared Properties of the Bright, Gravitationally Lensed Quasar J0439+1634 at z = 6.5
Astrophysical Journal, 2019, 880, 153
5.255Citations (PDF)
108An ALMA Multiline Survey of the Interstellar Medium of the Redshift 7.5 Quasar Host Galaxy J1342+0928
Astrophysical Journal, 2019, 881, 63
5.285Citations (PDF)
109Star Formation and ISM Properties in the Host Galaxies of Three Far-infrared Luminous Quasars at z ∼ 6
Astrophysical Journal, 2019, 876, 99
5.243Citations (PDF)
110Overview of the DESI Legacy Imaging Surveys
Astronomical Journal, 2019, 157, 168
5.01,823Citations (PDF)
111Gemini GNIRS Near-infrared Spectroscopy of 50 Quasars at z ≳ 5.7
Astrophysical Journal, 2019, 873, 35
5.2177Citations (PDF)
112Filling in the Quasar Redshift Gap at z ∼ 5.5. II. A Complete Survey of Luminous Quasars in the Post-reionization Universe
Astrophysical Journal, 2019, 871, 199
5.235Citations (PDF)
113The Extremely Luminous Quasar Survey in the Sloan Digital Sky Survey Footprint. III. The South Galactic Cap Sample and the Quasar Luminosity Function at Cosmic Noon
Astrophysical Journal, 2019, 871, 258
5.242Citations (PDF)
114Resolving the Interstellar Medium in the Nuclear Region of Two z = 5.78 Quasar Host Galaxies with ALMA
Astrophysical Journal, 2019, 887, 40
5.219Citations (PDF)
115The REQUIEM Survey. I. A Search for Extended Lyα Nebular Emission Around 31 z > 5.7 Quasars
Astrophysical Journal, 2019, 887, 196
5.2101Citations (PDF)
116The Third Data Release of the Beijing–Arizona Sky Survey8.033Citations (PDF)
117The Discovery of a Gravitationally Lensed Quasar at z = 6.5111.488Citations (PDF)
118Spectral Energy Distributions of Companion Galaxies to z ∼ 6 Quasars
Astrophysical Journal, 2019, 881, 163
5.224Citations (PDF)
119X-Ray Observations of a z ∼ 6.2 Quasar/Galaxy Merger
Astrophysical Journal, 2019, 887, 171
5.235Citations (PDF)
120Quasars Have Fewer Close Companions than Normal Galaxies
Astrophysical Journal, 2019, 883, 141
5.24Citations (PDF)
121An ALMA [C ii] Survey of 27 Quasars at z > 5.94
Astrophysical Journal, 2018, 854, 97
5.2308Citations (PDF)
122Effects of Total-Ionizing-Dose Irradiation on Single-Event Response for Flip-Flop Designs at a 14-/16-nm Bulk FinFET Technology Node1.37Citations (PDF)
123The Discovery of a Luminous Broad Absorption Line Quasar at a Redshift of 7.0211.4112Citations (PDF)
124No Evidence for Enhanced [O iii] 88 μm Emission in a z ∼ 6 Quasar Compared to Its Companion Starbursting Galaxy11.460Citations (PDF)
125The Extremely Luminous Quasar Survey in the Sloan Digital Sky Survey Footprint. II. The North Galactic Cap Sample
Astrophysical Journal, 2018, 863, 144
5.218Citations (PDF)
126Quantitative Constraints on the Reionization History from the IGM Damping Wing Signature in Two Quasars at z > 7
Astrophysical Journal, 2018, 864, 142
5.2310Citations (PDF)
127Dust Emission in an Accretion-rate-limited Sample of z ≳ 6 Quasars
Astrophysical Journal, 2018, 866, 159
5.297Citations (PDF)
128The evolution of chemical abundance in quasar broad line region4.755Citations (PDF)
129The Ensemble Photometric Variability of Over 105 Quasars in the Dark Energy Camera Legacy Survey and the Sloan Digital Sky Survey
Astrophysical Journal, 2018, 861, 6
5.235Citations (PDF)
130No Evidence for Millimeter Continuum Source Overdensities in the Environments of z ≳ 6 Quasars
Astrophysical Journal, 2018, 867, 153
5.233Citations (PDF)
131Predicting Quasar Continua near Lyα with Principal Component Analysis
Astrophysical Journal, 2018, 864, 143
5.274Citations (PDF)
132Steep Hard-X-Ray Spectra Indicate Extremely High Accretion Rates in Weak Emission-line Quasars*
Astrophysical Journal, 2018, 865, 92
5.224Citations (PDF)
133A giant protocluster of galaxies at redshift 5.7
Nature Astronomy, 2018, 2, 962-966
12.860Citations (PDF)
134Discovery of 21 New Changing-look AGNs in the Northern Sky
Astrophysical Journal, 2018, 862, 109
5.2204Citations (PDF)
135The Second Data Release of the Beijing–Arizona Sky Survey8.027Citations (PDF)
136A Hubble Space Telescope imaging study of four FeLoBAL quasar host galaxies4.77Citations (PDF)
137The Faint End of the z = 5 Quasar Luminosity Function from the CFHTLS
Astronomical Journal, 2018, 155, 131
5.094Citations (PDF)
138New constraints on Lyman-α opacity with a sample of 62 quasars at z > 5.74.7172Citations (PDF)
139Chandra X-Rays from the Redshift 7.54 Quasar ULAS J1342+092811.437Citations (PDF)
140The Fourteenth Data Release of the Sloan Digital Sky Survey: First Spectroscopic Data from the Extended Baryon Oscillation Spectroscopic Survey and from the Second Phase of the Apache Point Observatory Galactic Evolution Experiment8.0909Citations (PDF)
141Deep CFHT Y-band Imaging of VVDS-F22 Field. II. Quasar Selection and Quasar Luminosity Function
Astronomical Journal, 2018, 155, 110
5.04Citations (PDF)
142Photometric Calibration for the Beijing–Arizona Sky Survey and Mayall z-band Legacy Survey7.115Citations (PDF)
143A Quasar Discovered at redshift 6.6 from Pan-STARRS14.724Citations (PDF)
144High Lyman Continuum Escape Fraction in a Lensed Young Compact Dwarf Galaxy at z = 2.511.493Citations (PDF)
145Discovery of an Enormous Lyα Nebula in a Massive Galaxy Overdensity at z = 2.3
Astrophysical Journal, 2017, 837, 71
5.2144Citations (PDF)
146First Discoveries of z > 6 Quasars with the DECam Legacy Survey and UKIRT Hemisphere Survey
Astrophysical Journal, 2017, 839, 27
5.283Citations (PDF)
147Project Overview of the Beijing–Arizona Sky Survey7.1210Citations (PDF)
148Cosmic Reionization on Computers: Properties of the Post-reionization IGM
Astrophysical Journal, 2017, 841, 26
5.239Citations (PDF)
149Milliarcsecond Imaging of the Radio Emission from the Quasar with the Most Massive Black Hole at Reionization11.413Citations (PDF)
150The Physical Constraints on a New LoBAL QSO at z = 4.82
Astrophysical Journal, 2017, 838, 135
5.26Citations (PDF)
151Mapping the Most Massive Overdensities through Hydrogen (MAMMOTH). II. Discovery of the Extremely Massive Overdensity BOSS1441 at z = 2.32
Astrophysical Journal, 2017, 839, 131
5.2107Citations (PDF)
152Discovery of 16 New z ∼ 5.5 Quasars: Filling in the Redshift Gap of Quasar Color Selection
Astronomical Journal, 2017, 153, 184
5.043Citations (PDF)
153Gas Dynamics of a Luminous z = 6.13 Quasar ULAS J1319+0950 Revealed by ALMA High-resolution Observations
Astrophysical Journal, 2017, 845, 138
5.257Citations (PDF)
154Constraining C iii] Emission in a Sample of Five Luminous z = 5.7 Galaxies11.414Citations (PDF)
155The 13th Data Release of the Sloan Digital Sky Survey: First Spectroscopic Data from the SDSS-IV Survey Mapping Nearby Galaxies at Apache Point Observatory8.0509Citations (PDF)
156Copious Amounts of Dust and Gas in a z = 7.5 Quasar Host Galaxy11.4124Citations (PDF)
157Sloan Digital Sky Survey IV: Mapping the Milky Way, Nearby Galaxies, and the Distant Universe
Astronomical Journal, 2017, 154, 28
5.01,459Citations (PDF)
158XMM–Newton observation of the ultraluminous quasar SDSS J010013.02+280225.8 at redshift 6.3264.711Citations (PDF)
159Probing the Metal Enrichment of the Intergalactic Medium at z = 5–6 Using the Hubble Space Telescope11.414Citations (PDF)
160Boötes-HiZELS: an optical to near-infrared survey of emission-line galaxies at z = 0.4–4.74.746Citations (PDF)
161The Extremely Luminous Quasar Survey in the SDSS Footprint. I. Infrared-based Candidate Selection
Astrophysical Journal, 2017, 851, 13
5.242Citations (PDF)
162A Magellan M2FS Spectroscopic Survey of Galaxies at 5.5 < z < 6.8: Program Overview and a Sample of the Brightest Lyα Emitters
Astrophysical Journal, 2017, 846, 134
5.227Citations (PDF)
163Physical Properties of 15 Quasars at z ≳ 6.5
Astrophysical Journal, 2017, 849, 91
5.2279Citations (PDF)
164The Sloan Digital Sky Survey Quasar Catalog: Twelfth data release5.9390Citations (PDF)
165Quasar Photometric Redshifts and Candidate Selection: A New Algorithm Based on Optical and Mid-infrared Photometric Data
Astronomical Journal, 2017, 154, 269
5.031Citations (PDF)
166An 800-million-solar-mass black hole in a significantly neutral Universe at a redshift of 7.5
Nature, 2017, 553, 473-476
37.91,008Citations (PDF)
167The First Data Release of the Beijing-Arizona Sky Survey
Astronomical Journal, 2017, 153, 276
5.024Citations (PDF)
168PHYSICAL PROPERTIES OF SPECTROSCOPICALLY CONFIRMED GALAXIES AT z ≥ 6. III. STELLAR POPULATIONS FROM SED MODELING WITH SECURE Lyα EMISSION AND REDSHIFTS*
Astrophysical Journal, 2016, 816, 16
5.236Citations (PDF)
169MAPPING THE MOST MASSIVE OVERDENSITY THROUGH HYDROGEN (MAMMOTH). I. METHODOLOGY
Astrophysical Journal, 2016, 833, 135
5.280Citations (PDF)
170A SURVEY OF LUMINOUS HIGH-REDSHIFT QUASARS WITH SDSS AND WISE. II. THE BRIGHT END OF THE QUASAR LUMINOSITY FUNCTION AT z ∼ 5
Astrophysical Journal, 2016, 829, 33
5.277Citations (PDF)
171THE FINAL SDSS HIGH-REDSHIFT QUASAR SAMPLE OF 52 QUASARS AT z > 5.7
Astrophysical Journal, 2016, 833, 222
5.2294Citations (PDF)
172EXPLORATORY CHANDRA OBSERVATION OF THE ULTRALUMINOUS QUASAR SDSS J010013.02+280225.8 AT REDSHIFT 6.3011.415Citations (PDF)
173A SURVEY OF LUMINOUS HIGH-REDSHIFT QUASARS WITH SDSS AND WISE. I. TARGET SELECTION AND OPTICAL SPECTROSCOPY
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174A CONSTRAINT ON QUASAR CLUSTERING AT z = 5 FROM A BINARY QUASAR*
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175SOUTH GALACTIC CAP u-BAND SKY SURVEY (SCUSS): DATA RELEASE
Astronomical Journal, 2016, 151, 37
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176REVERBERATION MAPPING WITH INTERMEDIATE-BAND PHOTOMETRY: DETECTION OF BROAD-LINE Hα TIME LAGS FOR QUASARS AT 0.2 < z < 0.4
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177PROBING THE INTERSTELLAR MEDIUM AND STAR FORMATION OF THE MOST LUMINOUS QUASAR AT z = 6.3
Astrophysical Journal, 2016, 830, 53
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178THE SDSS-IV EXTENDED BARYON OSCILLATION SPECTROSCOPIC SURVEY: OVERVIEW AND EARLY DATA
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179STELLAR AND BLACK HOLE MASS DENSITIES AS EMPIRICAL TRACERS OF CO-EVOLUTION SHOW LOCK-STEP GROWTH SINCE Z ∼ 3
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180AN ULTRA-LUMINOUS QUASAR AT z = 5.363 WITH A TEN BILLION SOLAR MASS BLACK HOLE AND A METAL-RICH DLA AT z ∼ 511.438Citations (PDF)
181BAYESIAN HIGH-REDSHIFT QUASAR CLASSIFICATION FROM OPTICAL AND MID-IR PHOTOMETRY8.066Citations (PDF)
182BRIGHT [C II] 158 μ m EMISSION IN A QUASAR HOST GALAXY AT z = 6.5411.464Citations (PDF)
183Imaging the cold molecular gas in SDSS J1148 + 5251 at z = 6.44.726Citations (PDF)
184SOUTH GALACTIC CAPu-BAND SKY SURVEY (SCUSS): DATA REDUCTION
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185THE IDENTIFICATION OF z -DROPOUTS IN PAN-STARRS1: THREE QUASARS AT 6.5< z < 6.711.4166Citations (PDF)
186LBT/LUCI SPECTROSCOPIC OBSERVATIONS OFz≃7 Galaxies GALAXIES
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187THE SLOAN DIGITAL SKY SURVEY REVERBERATION MAPPING PROJECT: TECHNICAL OVERVIEW8.0189Citations (PDF)
188CONSTRAINING VERY HIGH MASS POPULATION III STARS THROUGH He II EMISSION IN GALAXY BDF-521 AT z = 7.0111.415Citations (PDF)
189BLACK HOLE MASS ESTIMATES AND RAPID GROWTH OF SUPERMASSIVE BLACK HOLES IN LUMINOUSz∼ 3.5 QUASARS
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190Capability of Quasar Selection by Combining SCUSS and SDSS Observations7.18Citations (PDF)
191An ultraluminous quasar with a twelve-billion-solar-mass black hole at redshift 6.30
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192DISCOVERY OF EIGHTz∼ 6 QUASARS IN THE SLOAN DIGITAL SKY SURVEY OVERLAP REGIONS
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193DETECTION OF REST-FRAME OPTICAL LINES FROM X-SHOOTER SPECTROSCOPY OF WEAK EMISSION-LINE QUASARS
Astrophysical Journal, 2015, 805, 123
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194THE ELEVENTH AND TWELFTH DATA RELEASES OF THE SLOAN DIGITAL SKY SURVEY: FINAL DATA FROM SDSS-III8.02,231Citations (PDF)
195REST-FRAME OPTICAL SPECTRA AND BLACK HOLE MASSES OF 3 <z< 6 QUASARS
Astrophysical Journal, 2015, 806, 109
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196The 0.1 <z< 1.65 evolution of the bright end of the [O ii] luminosity function5.989Citations (PDF)
197Observational studies on high-redshift quasars
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198Ionized Carbon and CO Emission from High-redshift Quasars
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199CLOSE COMPANIONS TO TWO HIGH-REDSHIFT QUASARS
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200SDSS J013127.34–032100.1: A NEWLY DISCOVERED RADIO-LOUD QUASAR AT z = 5.18 WITH EXTREMELY HIGH LUMINOSITY11.432Citations (PDF)
201A GLIMPSE AT QUASAR HOST GALAXY FAR-UV EMISSION USING DAMPED Lyα's AS NATURAL CORONAGRAPHS
Astrophysical Journal, 2014, 793, 139
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202THE SLOAN DIGITAL SKY SURVEY COADD: 275 deg2OF DEEP SLOAN DIGITAL SKY SURVEY IMAGING ON STRIPE 82
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203SPECTRAL ENERGY DISTRIBUTIONS OF QSOs ATz> 5: COMMON ACTIVE GALACTIC NUCLEUS-HEATED DUST AND OCCASIONALLY STRONG STAR-FORMATION
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204THE SLOAN DIGITAL SKY SURVEY STRIPE 82 IMAGING DATA: DEPTH-OPTIMIZED CO-ADDS OVER 300 deg 2 IN FIVE FILTERS8.0103Citations (PDF)
205CHANDRAAND MMT OBSERVATIONS OF LOW-MASS BLACK HOLE ACTIVE GALACTIC NUCLEI ACCRETING AT LOW RATES IN DWARF GALAXIES
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206The Sloan Digital Sky Survey quasar catalog: tenth data release5.9216Citations (PDF)
207STAR FORMATION AND GAS KINEMATICS OF QUASAR HOST GALAXIES ATz∼ 6: NEW INSIGHTS FROM ALMA
Astrophysical Journal, 2013, 773, 44
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208THE SDSS-III BARYON OSCILLATION SPECTROSCOPIC SURVEY: THE QUASAR LUMINOSITY FUNCTION FROM DATA RELEASE NINE
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209THE BARYON OSCILLATION SPECTROSCOPIC SURVEY OF SDSS-III
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210PHYSICAL PROPERTIES OF SPECTROSCOPICALLY CONFIRMED GALAXIES ATz⩾ 6. I. BASIC CHARACTERISTICS OF THE REST-FRAME UV CONTINUUM AND Lyα EMISSION
Astrophysical Journal, 2013, 772, 99
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211COMPLETE INFRARED SPECTRAL ENERGY DISTRIBUTIONS OF MILLIMETER DETECTED QUASARS ATz> 5
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212THEz= 5 QUASAR LUMINOSITY FUNCTION FROM SDSS STRIPE 82
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213THE LBT BOÖTES FIELD SURVEY. I. THE REST-FRAME ULTRAVIOLET AND NEAR-INFRARED LUMINOSITY FUNCTIONS AND CLUSTERING OF BRIGHT LYMAN BREAK GALAXIES ATZ∼ 3
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214PHYSICAL PROPERTIES OF SPECTROSCOPICALLY CONFIRMED GALAXIES ATz⩾ 6. II. MORPHOLOGY OF THE REST-FRAME UV CONTINUUM AND Lyα EMISSION
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215DEEP LBT/LUCI SPECTROSCOPY OF AN Lyα EMITTER CANDIDATE AT z ≃ 7.711.413Citations (PDF)
216Observations of the first light and the epoch of reionization3.211Citations (PDF)
2173D-HST: A WIDE-FIELD GRISM SPECTROSCOPIC SURVEY WITH THE HUBBLE SPACE TELESCOPE8.0628Citations (PDF)
218THE FIRST HIGH-REDSHIFT QUASAR FROM Pan-STARRS
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219AN ULTRAVIOLET ULTRA-LUMINOUS LYMAN BREAK GALAXY AT Z= 2.78 IN NDWFS BOÖTES FIELD ,,
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220A UNIFORMLY SELECTED SAMPLE OF LOW-MASS BLACK HOLES IN SEYFERT 1 GALAXIES
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221THE NINTH DATA RELEASE OF THE SLOAN DIGITAL SKY SURVEY: FIRST SPECTROSCOPIC DATA FROM THE SDSS-III BARYON OSCILLATION SPECTROSCOPIC SURVEY8.01,284Citations (PDF)
222SDSS-III: MASSIVE SPECTROSCOPIC SURVEYS OF THE DISTANT UNIVERSE, THE MILKY WAY, AND EXTRA-SOLAR PLANETARY SYSTEMS
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223PROBING POPULATION III STARS IN GALAXY IOK-1 AT z = 6.96 THROUGH He II EMISSION11.432Citations (PDF)
224EVIDENCE FOR NON-EVOLVING Fe II/Mg II RATIOS IN RAPIDLY ACCRETINGz∼ 6 QSOs
Astrophysical Journal, 2011, 739, 56
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225CO (2-1) LINE EMISSION IN REDSHIFT 6 QUASAR HOST GALAXIES11.462Citations (PDF)
226WHAT CONTROLS THE Fe II STRENGTH IN ACTIVE GALACTIC NUCLEI?
Astrophysical Journal, 2011, 736, 86
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227DUST PROPERTIES IN THE AFTERGLOW OF GRB 071025 AT z ∼ 511.410Citations (PDF)
228CONSTRAINTS ON THE UNIVERSAL C IV MASS DENSITY ATz∼ 6 FROM EARLY INFRARED SPECTRA OBTAINED WITH THE MAGELLAN FIRE SPECTROGRAPH
Astrophysical Journal, 2011, 743, 21
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229THE ULTRAVIOLET-TO-MID-INFRARED SPECTRAL ENERGY DISTRIBUTION OF WEAK EMISSION LINE QUASARS
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230The first (nearly) model-independent constraint on the neutral hydrogen fraction at4.7100Citations (PDF)
231DISCOVERING THE MISSING 2.2
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232THE EIGHTH DATA RELEASE OF THE SLOAN DIGITAL SKY SURVEY: FIRST DATA FROM SDSS-III8.01,277Citations (PDF)
233FAR-INFRARED AND MOLECULAR CO EMISSION FROM THE HOST GALAXIES OF FAINT QUASARS ATz∼ 6
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234MOLECULAR GAS INz∼ 6 QUASAR HOST GALAXIES
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235LBT/LUCIFER OBSERVATIONS OF THEz∼ 2 LENSED GALAXY J0900+2234
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236THE PREVALENCE OF NARROW OPTICAL Fe II EMISSION LINES IN TYPE 1 ACTIVE GALACTIC NUCLEI
Astrophysical Journal Letters, 2010, 721, L143-L147
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237CONSTRAINTS ON BLACK HOLE GROWTH, QUASAR LIFETIMES, AND EDDINGTON RATIO DISTRIBUTIONS FROM THE SDSS BROAD-LINE QUASAR BLACK HOLE MASS FUNCTION
Astrophysical Journal, 2010, 719, 1315-1334
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238BINARY QUASARS AT HIGH REDSHIFT. I. 24 NEW QUASAR PAIRS ATz∼ 3-4
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239BINARY QUASARS AT HIGH REDSHIFT. II. SUB-Mpc CLUSTERING ATz∼ 3-4
Astrophysical Journal, 2010, 719, 1693-1698
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240MULTIWAVELENGTH OBSERVATIONS OF RADIO-QUIET QUASARS WITH WEAK EMISSION LINES
Astrophysical Journal, 2010, 721, 562-575
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241Dust-free quasars in the early Universe
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242WEAK LINE QUASARS AT HIGH REDSHIFT: EXTREMELY HIGH ACCRETION RATES OR ANEMIC BROAD-LINE REGIONS?
Astrophysical Journal Letters, 2010, 722, L152-L156
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243THE SLOAN DIGITAL SKY SURVEY QUASAR CATALOG. V. SEVENTH DATA RELEASE
Astronomical Journal, 2010, 139, 2360-2373
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244SDSS J094604.90+183541.8: A GRAVITATIONALLY LENSED QUASAR ATz= 4.8
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245OPTICALLY SELECTED BL LACERTAE CANDIDATES FROM THE SLOAN DIGITAL SKY SURVEY DATA RELEASE SEVEN
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246QUASAR CLUSTERING FROM SDSS DR5: DEPENDENCES ON PHYSICAL PROPERTIES
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247NEAR-INFRARED SPECTROSCOPY OF SDSS J0303 – 0019: A LOW-LUMINOSITY, HIGH-EDDINGTON-RATIO QUASAR ATz∼ 6
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248A CATALOG OF BROAD ABSORPTION LINE QUASARS IN SLOAN DIGITAL SKY SURVEY DATA RELEASE 5
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249DETERMINING QUASAR BLACK HOLE MASS FUNCTIONS FROM THEIR BROAD EMISSION LINES: APPLICATION TO THE BRIGHT QUASAR SURVEY
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250AN OBSERVATIONAL DETERMINATION OF THE PROTON TO ELECTRON MASS RATIO IN THE EARLY UNIVERSE
Astrophysical Journal, 2009, 703, 1648-1662
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251A SURVEY OFz∼ 6 QUASARS IN THE SLOAN DIGITAL SKY SURVEY DEEP STRIPE. II. DISCOVERY OF SIX QUASARS ATzAB>21
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252THE SEVENTH DATA RELEASE OF THE SLOAN DIGITAL SKY SURVEY8.04,707Citations (PDF)
253EDDINGTON RATIO GOVERNS THE EQUIVALENT WIDTH OF Mg II EMISSION LINE IN ACTIVE GALACTIC NUCLEI
Astrophysical Journal, 2009, 703, L1-L5
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254HIGH-REDSHIFT SDSS QUASARS WITH WEAK EMISSION LINES
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255X-RAY INSIGHTS INTO THE NATURE OF WEAK EMISSION-LINE QUASARS AT HIGH REDSHIFT
Astrophysical Journal, 2009, 696, 580-590
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256THE 0.8-14.5 μm SPECTRA OF MID-L TO MID-T DWARFS: DIAGNOSTICS OF EFFECTIVE TEMPERATURE, GRAIN SEDIMENTATION, GAS TRANSPORT, AND SURFACE GRAVITY
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257A molecular probe of dark energy
Advances in Space Research, 2008, 42, 596-598
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258Four faint T dwarfs from the UKIRT Infrared Deep Sky Survey (UKIDSS) Southern Stripe3.914Citations (PDF)
259Glimpsing through the high-redshift neutral hydrogen fog4.783Citations (PDF)
260Thermal Emission from Warm Dust in the Most Distant Quasars
Astrophysical Journal, 2008, 687, 848-858
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261A Flexible Method of Estimating Luminosity Functions
Astrophysical Journal, 2008, 682, 874-895
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262Modeling the Dust Properties ofz∼ 6 Quasars with ART2—All‐Wavelength Radiative Transfer with Adaptive Refinement Tree
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263A SURVEY OFz∼ 6 QUASARS IN THE SLOAN DIGITAL SKY SURVEY DEEP STRIPE. I. A FLUX-LIMITED SAMPLE ATzAB< 21
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264Mass Functions of the Active Black Holes in Distant Quasars from the Sloan Digital Sky Survey Data Release 3
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265Luminosity Function Constraints on the Evolution of Massive Red Galaxies sincez∼ 0.9
Astrophysical Journal, 2008, 682, 919-936
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266SHARC-II 350 μm OBSERVATIONS OF THERMAL EMISSION FROM WARM DUST INz⩾ 5 QUASARS
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267A Sample of Quasars with Strong Nitrogen Emission Lines from the Sloan Digital Sky Survey
Astrophysical Journal, 2008, 679, 962-966
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268The Radio‐Loud Fraction of Quasars is a Strong Function of Redshift and Optical Luminosity
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2693.6–7.9 μm Photometry of L and T Dwarfs and the Prevalence of Vertical Mixing in their Atmospheres
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270The Sloan Digital Sky Survey Quasar Catalog. IV. Fifth Data Release
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271Constraints on the Cosmic Near‐Infrared Background Excess from NICMOS Deep Field Observations
Astrophysical Journal, 2007, 657, 669-680
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272Evidence for az< 8 Origin of the Source‐subtracted Near‐Infrared Background
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273Clustering of High-Redshift (z≥ 2.9) Quasars from the Sloan Digital Sky Survey
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274Gemini Near-Infrared Spectroscopy of Luminousz~ 6 Quasars: Chemical Abundances, Black Hole Masses, and MgiiAbsorption
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275Millimeter and Radio Observations ofz~ 6 Quasars
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276Black Hole Masses and Enrichment ofz∼ 6 SDSS Quasars
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277Observational Constraints on Cosmic Reionization30.4716Citations (PDF)
278Quasars Probing Quasars. I. Optically Thick Absorbers near Luminous Quasars
Astrophysical Journal, 2006, 651, 61-83
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279A Catalog of Broad Absorption Line Quasars from the Sloan Digital Sky Survey Third Data Release8.0366Citations (PDF)
280Star Formation History of the Hubble Ultra Deep Field: Comparison with the Hubble Deep Field–North
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281A Spectroscopic Survey of Faint Quasars in the SDSS Deep Stripe. I. Preliminary Results from the Co-added Catalog
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282Spitzer Observations of High-Redshift QSOs
Astrophysical Journal, 2006, 641, L85-L88
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283An MMT Hectospec Redshift Survey of 24 μm Sources in theSpitzerFirst Look Survey
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284Constraining the Evolution of the Ionizing Background and the Epoch of Reionization withz ~ 6 Quasars. II. A Sample of 19 Quasars
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285SDSS J1534+1615AB: A Novel T Dwarf Binary Found with Keck Laser Guide Star Adaptive Optics and the Potential Role of Binarity in the L/T Transition
Astrophysical Journal, 2006, 647, 1393-1404
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286A Survey ofz > 5.7 Quasars in the Sloan Digital Sky Survey. IV. Discovery of Seven Additional Quasars
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287Seventy-One New L and T Dwarfs from the Sloan Digital Sky Survey
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288The Discovery of Three Newz > 5 Quasars in the AGN and Galaxy Evolution Survey
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289Probing the Evolution of Infrared Properties ofz~ 6 Quasars:SpitzerObservations
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290Binary Quasars in the Sloan Digital Sky Survey: Evidence for Excess Clustering on Small Scales
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291A Snapshot Survey for Gravitational Lenses amongz ≥ 4.0 Quasars. II. Constraints on the 4.0 < z < 5.4 Quasar Population
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292ChandraObservations of the Highest Redshift Quasars from the Sloan Digital Sky Survey
Astrophysical Journal, 2006, 644, 86-99
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293The Sloan Digital Sky Survey Quasar Survey: Quasar Luminosity Function from Data Release 3
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294Evolution of high-redshift quasars
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295Spectral Energy Distributions and Multiwavelength Selection of Type 1 Quasars8.01,119Citations (PDF)
296Cosmic Reionization Redux
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297The Sloan Digital Sky Survey Quasar Catalog. III. Third Data Release
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298Hubble Space TelescopeAdvanced Camera for Surveys Observations of thez= 6.42 Quasar SDSS J1148+5251: A Leak in the Gunn-Peterson Trough
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299The X‐Ray Spectral Properties and Variability of Luminous High‐Redshift Active Galactic Nuclei
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300The 2dF-SDSS LRG and QSO (2SLAQ) Survey: thez< 2.1 quasar luminosity function from 5645 quasars tog= 21.854.7185Citations (PDF)
301The Third Data Release of the Sloan Digital Sky Survey
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302Efficient Photometric Selection of Quasars from the Sloan Digital Sky Survey: 100,000 z < 3 Quasars from Data Release One8.0181Citations (PDF)
303X-rays from the first massive black holes
Advances in Space Research, 2004, 34, 2478-2485
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304A Snapshot Survey for Gravitational Lenses amongz4.0 Quasars. I. Thez>5.7 Sample
Astronomical Journal, 2004, 127, 1305-1312
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305A Survey ofz > 5.7 Quasars in the Sloan Digital Sky Survey. III. Discovery of Five Additional Quasars
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306Galaxies at [FORMULA][F]z~7-8[/F][/FORMULA]: [FORMULA][F]z[INF]850[/INF][/F][/FORMULA]-Dropouts in the Hubble Ultra Deep Field
Astrophysical Journal, 2004, 616, L79-L82
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307Resolved Molecular Gas in a Quasar Host Galaxy at Redshift [FORMULA][F]z=6.42[/F][/FORMULA]
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308A Second Stellar Color Locus: a Bridge from White Dwarfs to M stars
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309Molecular gas in the host galaxy of a quasar at redshift z = 6.42
Nature, 2003, 424, 406-408
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310ChandraandXMM-NewtonObservations of the First Quasars: X-Rays from the Age of Cosmic Enlightenment
Astronomical Journal, 2003, 125, 2876-2890
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311Probing the Ionization State of the Universe atz>6
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312Sensitive Observations at 1.4 and 250 GHz ofz>5 QSOs
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313A Large, Uniform Sample of X-Ray-emitting AGNs: Selection Approach and an Initial Catalog from theROSATAll-Sky and Sloan Digital Sky Surveys
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314VLT+UVES Spectroscopy of the CaiiLow‐Ionization Broad Absorption Line Quasar SDSS J030000.56+004828.0
Astrophysical Journal, 2003, 593, 189-202
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315Red and Reddened Quasars in the Sloan Digital Sky Survey
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316Continuum and Emission-Line Properties of Broad Absorption Line Quasars
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317An Initial Survey of White Dwarfs in the Sloan Digital Sky Survey
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318The CivMass Density of the Universe at Redshift 5
Astrophysical Journal, 2003, 594, 695-703
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319A Survey of [CLC][ITAL]z[/ITAL][/CLC] ] 5.7 Quasars in the Sloan Digital Sky Survey. II. Discovery of Three Additional Quasars at [CLC][ITAL]z[/ITAL][/CLC] ] 6
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320CombiningWilkinson Microwave Anisotropy Probeand Sloan Digital Sky Survey Quasar Data on Reionization Constrains Cosmological Parameters and Star Formation Efficiency
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321Dust emission from the most distant quasars
Astronomy and Astrophysics, 2003, 406, L55-L58
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322The near-IR properties and continuum shapes of high redshift quasars from the Sloan Digital Sky Survey
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323Sloan Digital Sky Survey: Early Data Release
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324Spectroscopic Target Selection in the Sloan Digital Sky Survey: The Quasar Sample
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325Exploratory [ITAL]Chandra[/ITAL] Observations of the Three Highest Redshift Quasars Known
Astrophysical Journal, 2002, 569, L5-L9
5.262Citations (PDF)
326Clouds and Chemistry: Ultracool Dwarf Atmospheric Properties from Optical and Infrared Colors
Astrophysical Journal, 2002, 568, 335-342
5.2321Citations (PDF)
327An F[CLC]e[/CLC]L[CLC]o[/CLC]BAL Binary Quasar
Astrophysical Journal, 2002, 573, L85-L89
5.226Citations (PDF)
328Optical and Radio Properties of Extragalactic Sources Observed by the FIRST Survey and the Sloan Digital Sky Survey
Astronomical Journal, 2002, 124, 2364-2400
5.0462Citations (PDF)
329Evolution of the Ionizing Background and the Epoch of Reionization from the Spectra of [ITAL][CLC]z[/CLC][/ITAL] ∼ 6 Quasars
Astronomical Journal, 2002, 123, 1247-1257
5.0475Citations (PDF)
330VLT Optical and Near-Infrared Observations of the [CLC][ITAL]z[/ITAL][/CLC] = 6.28 Quasar SDSS J1030+0524
Astronomical Journal, 2002, 123, 2151-2158
5.0100Citations (PDF)
331Unusual Broad Absorption Line Quasars from the Sloan Digital Sky Survey8.0331Citations (PDF)
332Colors of 2625 Quasars at 0 < [ITAL][CLC]z[/CLC][/ITAL] < 5 Measured in the Sloan Digital Sky Survey Photometric System
Astronomical Journal, 2001, 121, 2308-2330
5.0200Citations (PDF)
333A Survey of [CLC][ITAL]z[/ITAL][/CLC] > 5.8 Quasars in the Sloan Digital Sky Survey. I. Discovery of Three New Quasars and the Spatial Density of Luminous Quasars at [CLC][ITAL]z[/ITAL][/CLC] ∼ 6
Astronomical Journal, 2001, 122, 2833-2849
5.0856Citations (PDF)
334High-Redshift Quasars Found in Sloan Digital Sky Survey Commissioning Data. IV. Luminosity Function from the Fall Equatorial Stripe Sample
Astronomical Journal, 2001, 121, 54-65
5.0349Citations (PDF)
335Evidence for Reionization at [ITAL][CLC]z[/CLC][/ITAL] ∼ 6: Detection of a Gunn-Peterson Trough in a [ITAL][CLC]z[/CLC][/ITAL] = 6.28 Quasar
Astronomical Journal, 2001, 122, 2850-2857
5.0816Citations (PDF)
336High-Redshift Quasars Found in Sloan Digital Sky Survey Commissioning Data. III. A Color-selected Sample at [ITAL][CLC]i[/CLC][/ITAL]* < 20 in the Fall Equatorial Stripe
Astronomical Journal, 2001, 121, 31-53
5.0115Citations (PDF)
337Solar System Objects Observed in the Sloan Digital Sky Survey Commissioning Data
Astronomical Journal, 2001, 122, 2749-2784
5.0410Citations (PDF)
338Exploratory [ITAL]CHANDRA[/ITAL][ITAL]Chandra[/ITAL] Observations of the Highest-Redshift Quasars: X-Rays from the Dawn of the Modern Universe
Astronomical Journal, 2001, 122, 2143-2155
5.048Citations (PDF)
339Composite Quasar Spectra from the Sloan Digital Sky Survey
Astronomical Journal, 2001, 122, 549-564
5.01,711Citations (PDF)
340An [ITAL]XMM[/ITAL]-[ITAL]Newton[/ITAL] Detection of the [CLC][ITAL]z[/ITAL][/CLC] = 5.80 X-Ray–Weak Quasar SDSS[CLC]p[/CLC] J104433.04-012502.2
Astronomical Journal, 2001, 121, 591-597
5.041Citations (PDF)
341A New Very Cool White Dwarf Discovered by the Sloan Digital Sky Survey
Astrophysical Journal, 2001, 549, L109-L113
5.248Citations (PDF)
342High-Redshift Quasars Found in Sloan Digital Sky Survey Commissioning Data. V. Hobby-Eberly Telescope Observations
Astronomical Journal, 2001, 121, 1232-1240
5.044Citations (PDF)
343High-Redshift Quasars Found in Sloan Digital Sky Survey Commissioning Data. VI. Sloan Digital Sky Survey Spectrograph Observations
Astronomical Journal, 2001, 122, 503-517
5.095Citations (PDF)
344A 250 GHz Survey of High‐Redshift Quasars from the Sloan Digital Sky Survey
Astrophysical Journal, 2001, 555, 625-632
5.2102Citations (PDF)
345Photometric Redshifts of Quasars
Astronomical Journal, 2001, 122, 1151-1162
5.087Citations (PDF)
346Broad Absorption Line Quasars in the Sloan Digital Sky Survey with VLA FIRST Radio Detections
Astrophysical Journal, 2001, 561, 645-652
5.253Citations (PDF)
347High-Redshift Quasars Found in Sloan Digital Sky Survey Commissioning Data. II. The Spring Equatorial Stripe
Astronomical Journal, 2000, 119, 1-11
5.060Citations (PDF)
348L Dwarfs Found in Sloan Digital Sky Survey Commissioning Imaging Data
Astronomical Journal, 2000, 119, 928-935
5.0133Citations (PDF)
349Five High-Redshift Quasars Discovered in Commissioning Imaging Data of the Sloan Digital Sky Survey
Astronomical Journal, 2000, 120, 1607-1611
5.048Citations (PDF)
350Discovery of a Pair of [CLC][ITAL]z[/ITAL][/CLC] = 4.25 Quasars from the Sloan Digital Sky Survey
Astronomical Journal, 2000, 120, 2183-2189
5.024Citations (PDF)
351Candidate RR Lyrae Stars Found in Sloan Digital Sky Survey Commissioning Data
Astronomical Journal, 2000, 120, 963-977
5.0214Citations (PDF)
352Optical and Infrared Colors of Stars Observed by the Two Micron All Sky Survey and the Sloan Digital Sky Survey
Astronomical Journal, 2000, 120, 2615-2626
5.0119Citations (PDF)
353The Sloan Digital Sky Survey: Technical Summary
Astronomical Journal, 2000, 120, 1579-1587
5.09,266Citations (PDF)
354The Discovery of a Luminous [CLC][ITAL]z[/ITAL][/CLC] = 5.80 Quasar from the Sloan Digital Sky Survey
Astronomical Journal, 2000, 120, 1167-1174
5.0256Citations (PDF)
355An Automated Cluster Finder: The Adaptive Matched Filter
Astrophysical Journal, 1999, 517, 78-91
5.2101Citations (PDF)
356High-Redshift Quasars Found in Sloan Digital Sky Survey Commissioning Data
Astronomical Journal, 1999, 118, 1-13
5.0139Citations (PDF)
357Simulation of Stellar Objects in SDSS Color Space
Astronomical Journal, 1999, 117, 2528-2551
5.0211Citations (PDF)
358The Discovery of a Field Methane Dwarf from Sloan Digital Sky Survey Commissioning Data
Astrophysical Journal, 1999, 522, L61-L64
5.2187Citations (PDF)
359The Discovery of a High-Redshift Quasar without Emission Lines from Sloan Digital Sky Survey Commissioning Data
Astrophysical Journal, 1999, 526, L57-L60
5.2112Citations (PDF)
360Catalog of Four‐Color Photometry of Stars, Galaxies, and QSOs Using SDSS Filters8.021Citations (PDF)
361A lightweight universe?7.538Citations (PDF)
362The Most Massive Distant Clusters: Determining Ω and σ8
Astrophysical Journal, 1998, 504, 1-6
5.2311Citations (PDF)
363Constraining Ω with Cluster Evolution
Astrophysical Journal, 1997, 485, L53-L56
5.2197Citations (PDF)
364Determining the Amplitude of Mass Fluctuations in the Universe
Astrophysical Journal, 1997, 490, L123-L126
5.270Citations (PDF)
365Quasar Photometry with the SDSS Monitor Telescope7.18Citations (PDF)
366Active Galactic Nuclei in the Extremely Overdense Galaxy Region BOSS 1441: A Chandra Observation5.21Citations (PDF)
367ALMA and JWST Imaging of <i>z</i> &gt; 6 Quasars: No Spatial Position Offset Observed between Quasars and Their Host Galaxies5.20Citations (PDF)
368First constraints on the local ionization topology in front of two quasars at <i>z</i> ∼ 7.54.70Citations (PDF)
369A Super-Eddington, Lensing-magnified Quasar at z = 5.07 Observed with JWST11.40Citations (PDF)
370A Close Quasar Pair in a Massive Galaxy Merger at z = 5.711.40Citations (PDF)
371Detection of an Extended Ly α Halo around a z = 6.64 Broad Absorption Line Quasar with the Keck Cosmic Web Imager11.40Citations (PDF)