QSO J1004+4112A , the SIMBAD biblio

QSO J1004+4112A , the SIMBAD biblio (59 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.06.12CEST08:56:51


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Title First 3 Authors
2003Natur.426..810I 9 6 167 A gravitationally lensed quasar with quadruple images separated by 14.62 arcseconds. INADA N., OGURI M., PINDOR B., et al.
2004ApJ...605...78O 3 9 100 Observations and theoretical implications of the large-separation lensed quasar SDSS J1004+4112. OGURI M., INADA N., KEETON C.R., et al.
2004ApJ...610..679R 3 9 85 Microlensing of the broad emission line region in the quadruple lens SDSS J1004+4112. RICHARDS G.T., KEETON C.R., PINDOR B., et al.
2004IAUC.8325....2R 2 3 Gravitational microlensing event. RICHARDS G., JOHNSTON D. and HENNAWI J.
2005ApJ...629L..73S 19 44 Discovery of multiply imaged galaxies behind the cluster and lensed quasar SDSS J1004+4112. SHARON K., OFEK E.O., SMITH G.P., et al.
2005PASJ...57L...7I 1 14 44 Discovery of a fifth image of the large separation gravitationally lensed quasar SDSS J1004+4112. INADA N., OGURI M., KEETON C.R., et al.
2006A&A...454..493L 1 7 18 Strange magnification pattern in the large separation lens SDSS J1004+4112 from optical to X-rays. LAMER G., SCHWOPE A., WISOTZKI L., et al.
2006ApJ...644..733G 28 20 Lens-Aided Multi-Angle Spectroscopy (LAMAS) reveals small-scale outflow structure in quasars. GREEN P.J.
2006ApJ...645L...5G 1 4 13 Recurrence of the blue wing enhancements in the high-ionization lines of SDSS 1004+4112A. GOMEZ-ALVAREZ P., MEDIAVILLA E., MUNOZ J.A., et al.
2006ApJ...647..215O 2 7 28 Chandra observations of SDSS J1004+4112: constraints on the lensing cluster and anomalous X-ray flux ratios of the quadruply imaged quasar. OTA N., INADA N., OGURI M., et al.
2006PASJ...58..271K 7 11 Time delays for the giant quadruple lensed quasar SDSS J1004+4112: prospects for determining the density profile of the lensing cluster. KAWANO Y. and OGURI M.
2007ApJ...662...62F viz 2 8 32 A time delay for the cluster-lensed quasar SDSS J1004+4112. FOHLMEISTER J., KOCHANEK C.S., FALCO E.E., et al.
2008ApJ...676..761F 4 5 43 The rewards of patience: an 822 day time delay in the gravitational lens SDSS J1004+4112. FOHLMEISTER J., KOCHANEK C.S., FALCO E.E., et al.
2008ApJ...678..635M viz 15       D               1 100 86 Quasar clustering at 25 h–1 kpc from a complete sample of binaries. MYERS A.D., RICHARDS G.T., BRUNNER R.J., et al.
2008A&A...485..403O 3442       D     X C       91 67 13 Extinction properties of lensing galaxies. OESTMAN L., GOOBAR A. and MOERTSELL E.
2009ApJ...693.1554F viz 15       D               1 171 32 Double quasars: probes of black hole scaling relationships and merger scenarios. FOREMAN G., VOLONTERI M. and DOTTI M.
2009RMxAC..35..195F 39 0 Cosmology with gravitational lenses. FALCO E.E.
2009MNRAS.397..341L 394       D     X C F     9 15 22 Non-parametric strong lens inversion of SDSS J1004+4112. LIESENBORGS J., DE RIJCKE S., DEJONGHE H., et al.
2009ApJ...702..472R 53       D     X   F     1 9 8 The UV-Mid-IR spectral energy distribution of a z = 1.7 quasar host galaxy. ROSS N.R., ASSEF R.J., KOCHANEK C.S., et al.
2008PASJ...60L..27I 11 13 Spectroscopic confirmation of the fifth image of SDSS J1004+4112 and implications for the MBH-σ* relation at z = 0.68. INADA N., OGURI M., FALCO E.E., et al.
2009ApJ...706.1451M 243       D     X   F     6 70 117 Microlensing-based estimate of the mass fraction in compact objects in lens galaxies. MEDIAVILLA E., MUNOZ J.A., FALCO E., et al.
2010PASJ...62.1017O 15 8 247 The mass distribution of SDSS J1004+4112 revisited. OGURI M.
2010A&A...518A..10V viz 15       D               1 168912 597 A catalogue of quasars and active nuclei: 13th edition. VERON-CETTY M.-P. and VERON P.
2011MNRAS.410.1939Z 40           X         1 23 135 Strong-lensing analysis of a complete sample of 12 MACS clusters at z > 0.5: mass models and EINSTEIN radii. ZITRIN A., BROADHURST T., BARKANA R., et al.
2011ApJ...739L..28J 15 8 The faintest radio source yet: expanded very large array observations of the gravitational lens SDSS J1004+4112. JACKSON N.
2012ApJ...755...82M 27 21 Measuring microlensing using spectra of multiply lensed quasars. MOTTA V., MEDIAVILLA E., FALCO E., et al.
2013ApJ...764..160G 211       D     X C       5 53 44 Microlensing of quasar broad emission lines: constraints on broad line region size. GUERRAS E., MEDIAVILLA E., JIMENEZ-VICENTE J., et al.
2013ApJ...774...29E 16       D               1 61 11 X-ray absorption of high-redshift quasars. EITAN A. and BEHAR E.
2014ApJ...783...47J 1 26 57 The average size and temperature profile of quasar accretion disks. JIMENEZ-VICENTE J., MEDIAVILLA E., KOCHANEK C.S., et al.
2015ApJ...799..149J 64 30 Dark matter mass fraction in lens galaxies: new estimates from microlensing. JIMENEZ-VICENTE J., MEDIAVILLA E., KOCHANEK C.S., et al.
2015PASJ...67...21M 596           X C F     13 19 5 Lensing time delays as a substructure constraint: a case study with the cluster SDSS J1004+4112. MOHAMMED I., SAHA P. and LIESENBORGS J.
2015ApJ...807..129S viz 16       D               1 137 110 The X-ray to mid-infrared relation of AGNs at high luminosity. STERN D.
2015A&A...580A..38R 16       D               1 50 19 H0 from ten well-measured time delay lenses. RATHNA KUMAR S., STALIN C.S. and PRABHU T.P.
2016A&A...592A..23B 41           X         1 5 6 The different origins of high- and low-ionization broad emission lines revealed by gravitational microlensing in the Einstein cross. BRAIBANT L., HUTSEMEKERS D., SLUSE D., et al.
2016ApJ...830..149F 6 4 Size of the accretion disk in the graviationally lensed quasar SDSS J1004+4112 from the statistics of microlensing magnifications. FIAN C., MEDIAVILLA E., HANSLMEIER A., et al.
2016ApJ...832...46M 16       D               1 58 2 Peculiar transverse velocities of galaxies from quasar microlensing. Tentative estimate of the peculiar velocity dispersion at z ∼ 0.5. MEDIAVILLA E., JIMENEZ-VICENTE J., MUNOZ J.A., et al.
2018ApJ...859...50F 16       D               1 76 5 Microlensing and intrinsic variability of the broad emission lines of lensed quasars. FIAN C., GUERRAS E., MEDIAVILLA E., et al.
2018A&A...613A..51P viz 16       D               1 525784 350 The Sloan Digital Sky Survey Quasar Catalog: Fourteenth data release. PARIS I., PETITJEAN P., AUBOURG E., et al.
2019ApJ...870..125K 17 1 The effect of microlensing on the observed X-ray energy spectra of gravitationally lensed quasars. KRAWCZYNSKI H., CHARTAS G. and KISLAT F.
2019ApJ...879...35D 29 ~ Constraining quasar relativistic reflection regions and spins with microlensing. DAI X., STEELE S., GUERRAS E., et al.
2019ApJS..244...36C viz 17       D               1 173935 ~ Quasar properties from the Sloan Digital Sky Survey. II. The quasars obtained by the SDSS-IV in the first two years. CHEN Z.-F., YI S.-X., PANG T.-T., et al.
2019ApJ...885...77B 14 ~ Confirmation of planet-mass objects in extragalactic systems. BHATIANI S., DAI X. and GUERRAS E.
2020MNRAS.492..719T viz 17       D               1 2106 33 The correlations between optical/UV broad lines and X-ray emission for a large sample of quasars. TIMLIN J.D., BRANDT W.N., NI Q., et al.
2020A&A...634A..27P viz 877     A     X   F     20 8 ~ Spectroscopy and polarimetry of the gravitationally lensed quasar SDSS J1004+4112 with the 6m SAO RAS telescope. POPOVIC L.C., AFANASIEV V.L., MOISEEV A., et al.
2020ApJ...896..111G 17       D               1 19 ~ A second-order moment of microlensing variability as a novel tool to constrain source emission size or discrete lens demographics in extragalactic research. GUERRAS E., DAI X. and MEDIAVILLA E.
2020ApJS..249...17R viz 17       D               1 525797 112 Spectral properties of quasars from Sloan Digital Sky Survey data release 14: the catalog. RAKSHIT S., STALIN C.S. and KOTILAINEN J.
2020ApJS..250....8L viz 17       D               1 750060 219 The Sloan Digital Sky Survey quasar catalog: Sixteenth Data Release. LYKE B.W., HIGLEY A.N., McLANE J.N., et al.
2020A&A...642A.150L viz 17       D               1 2429 92 Quasars as standard candles. III. Validation of a new sample for cosmological studies. LUSSO E., RISALITI G., NARDINI E., et al.
2020A&A...643A..10H 43           X         1 7 ~ SDSS J1004+4112: the case for a galaxy cluster dominated by primordial black holes. HAWKINS M.R.S.
2021MNRAS.505L..36M 496       D     X C F     10 14 7 Gravitational lensing in LoTSS DR2: extremely faint 144-MHz radio emission from two highly magnified quasars. McKEAN J.P., LUICHIES R., DRABENT A., et al.
2021A&A...653A.109F 1132     A D     X C       26 78 9 Microlensing of the broad emission lines in 27 gravitationally lensed quasars. Broad line region structure and kinematics. FIAN C., MEDIAVILLA E., MOTTA V., et al.
2021A&A...655A.109B viz 17       D               9 2333 22 The Chandra view of the relation between X-ray and UV emission in quasars. BISOGNI S., LUSSO E., CIVANO F., et al.
2022ApJ...929..123E 18       D               1 34 ~ Abundance of LIGO/Virgo Black Holes from Microlensing Observations of Quasars with Reverberation Mapping Size Estimates. ESTEBAN-GUTIERREZ A., AGUES-PASZKOWSKY N., MEDIAVILLA E., et al.
2022ApJ...937...34M 18       D               1 9 6 The Longest Delay: A 14.5 yr Campaign to Determine the Third Time Delay in the Lensing Cluster SDSS J1004+4112. MUNOZ J.A., KOCHANEK C.S., FOHLMEISTER J., et al.
2022ApJ...937...35F 108       D     X         3 8 5 A Mass Model for the Lensing Cluster SDSS J1004+4112: Constraints from the Third Time Delay. FORES-TORIBIO R., MUNOZ J.A., KOCHANEK C.S., et al.
2023A&A...672A..45H 1847 T   A S   X C       37 6 1 Microlensing of the broad emission line region in the lensed quasar
J1004+4112.
HUTSEMEKERS D., SLUSE D., SAVIC D., et al.
2023ApJ...959..134N 19       D               20 ~ Hubble Constant Measurement from Three Large-separation Quasars Strongly Lensed by Galaxy Clusters. NAPIER K., SHARON K., DAHLE H., et al.
2024MNRAS.527.2393H 300           X C       5 20 ~ Evidence for microlensing by primordial black holes in quasar broad emission lines. HAWKINS M.R.S.
2024A&A...682A..57F 100               F     1 5 ~ Probing the structure of the lensed quasar SDSS J1004+4112 through microlensing analysis of spectroscopic data. FIAN C., MUNOZ J.A., FORES-TORIBIO R., et al.

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