QSO J0924+0219 , the SIMBAD biblio

QSO J0924+0219 , the SIMBAD biblio (138 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.19CEST05:41:15


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Title First 3 Authors
2003A&A...412..399V 72 164 A catalogue of quasars and active nuclei: 11th edition. VERON-CETTY M.-P. and VERON P.
2003AJ....125.2325P 11 23 Determining the lensing fraction of SDSS quasars: methods and results from the early data release. PINDOR B., TURNER E.L., LUPTON R.H., et al.
2003AJ....126..666I 112 T K                 12 79
SDSS J092455.87+021924.9: an interesting gravitationally lensed quasar from the Sloan Digital Sky Survey.
INADA N., BECKER R.H., BURLES S., et al.
2003AJ....126.2579S 16716 173 The Sloan Digital Sky Survey quasar catalog. II. First data release. SCHNEIDER D.P., FAN X., HALL P.B., et al.
2003ApJ...598..138K 1 23 137 Identifying lenses with small-scale structure. I. Cusp lenses. KEETON C.R., GAUDI B.S. and PETTERS A.O.
2004ApJ...610...69K 3 19 196 Tests for substructure in gravitational lenses. KOCHANEK C.S. and DALAL N.
2004ApJ...613...77S 4 2 28 Qualitative aspects of quasar microlensing with two mass components: magnification patterns and probability distributions. SCHECHTER P.L., WAMBSGANSS J. and LEWIS G.F.
2004AAS...205.2806P 2 2 Possible futures for quadruply-imaged quasar systems due to micro-lensing by stars. PEEPLES M.S., SCHECHTER P.L. and WAMBSGANSS J.K.
2005AJ....130..367S 46359 269 The Sloan Digital Sky Survey quasar catalog. III. Third data release. SCHNEIDER D.P., HALL P.B., RICHARDS G.T., et al.
2005ApJ...635...35K 30 61 Identifying lenses with small-scale structure. II. Fold lenses. KEETON C.R., GAUDI B.S. and PETTERS A.O.
2005MNRAS.361L..38O 10 9 Lens galaxy environments and anomalous flux ratios in gravitational lenses. OGURI M.
2006A&A...450..461S 28 16 COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses. IV. Models of prospective time-delay lenses. SAHA P., COURBIN F., SLUSE D., et al.
2006A&A...451..747E 38   K                 15 44 COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses. II. SDSS J0924+0219: the redshift of the lensing galaxy, the quasar spectral variability and the Einstein rings. EIGENBROD A., COURBIN F., DYE S., et al.
2006A&A...455..773V viz 108224 628 A catalogue of quasars and active nuclei: 12th edition. VERON-CETTY M.-P. and VERON P.
2006AJ....132..999O viz 3 21 141 The Sloan Digital Sky Survey Quasar Lens Search. I. Candidate selection algorithm. OGURI M., INADA N., PINDOR B., et al.
2006ApJ...637L..73K 1 7 20 A simple method to find all lensed quasars. KOCHANEK C.S., MOCHEJSKA B., MORGAN N.D., et al.
2006ApJ...639....1K 41   K                 7 63 Differential microlensing of the continuum and broad emission lines in
SDSS J0924+0219, the most anomalous lensed quasar.
KEETON C.R., BURLES S., SCHECHTER P.L., et al.
2006ApJ...641...70O 37   K                 27 27 Spectroscopic redshifts for seven lens galaxies. OFEK E.O., MAOZ D., RIX H.-W., et al.
2006ApJ...642...22Y 37   K                 30 33 Halo structures of gravitational lens galaxies. YOO J., KOCHANEK C.S., FALCO E.E., et al.
2006ApJ...647..874M 39   K                 6 35 Microlensing of the lensed quasar
SDSS 0924+0219.
MORGAN C.W., KOCHANEK C.S., MORGAN N.D., et al.
2006ApJ...648...67P 1 12 34 A strong X-ray flux ratio anomaly in the quadruply lensed quasar PG 1115+080. POOLEY D., BLACKBURNE J.A., RAPPAPORT S., et al.
2006ApJ...649..616P 3 60 362 Probing the coevolution of supermassive black holes and galaxies using gravitationally lensed quasar hosts. PENG C.Y., IMPEY C.D., RIX H.-W., et al.
2006MNRAS.370.1339H 2 5 22 Isophotal shapes of elliptical/lenticular galaxies from the Sloan Digital Sky Survey. HAO C.N., MAO S., DENG Z.G., et al.
2006MNRAS.372.1692A 6 4 Substructure and the cusp and fold relations. AAZAMI A.B. and NATARAJAN P.
2007ApJ...661...19P 6 13 162 X-ray and optical flux ratio anomalies in quadruply lensed quasars. I. Zooming in on quasar emission regions. POOLEY D., BLACKBURNE J.A., RAPPAPORT S., et al.
2007AJ....134..102S viz 77435 419 The Sloan Digital Sky Survey quasar catalog. IV. Fifth data release. SCHNEIDER D.P., HALL P.B., RICHARDS G.T., et al.
2007ApJ...664...53A viz 31831 13 Photometric selection of QSO candidates from GALEX sources. ATLEE D.W. and GOULD A.
2007MNRAS.381.1591B 75           X         2 9 13 Smooth matter and source size in microlensing simulations of gravitationally lensed quasars. BATE N.F., WEBSTER R.L. and WYITHE J.S.B.
2008MNRAS.384..843M 15       D               1 13 9 Validity of strong lensing statistics for constraints on the galaxy evolution model. MATSUMOTO A. and FUTAMASE T.
2008AJ....135..496I viz 15       D               2 113 80 The Sloan Digital Sky Survey Quasar Lens Search. II. Statistical lens sample from the third Data Release. INADA N., OGURI M., BECKER R.H., et al.
2008AJ....135..512O 18       D               1 12 82 The Sloan Digital Sky Survey Quasar Lens Search. III. Constraints on dark energy from the third Data Release quasar lens catalog. OGURI M., INADA N., STRAUSS M.A., et al.
2008A&A...480..647E 75           X         2 24 32 Microlensing variability in the gravitationally lensed quasar. QSO 2237+0305 = the Einstein Cross. I. Spectrophotometric monitoring with the VLT. EIGENBROD A., COURBIN F., SLUSE D., et al.
2008ApJ...680..169S viz 15       D               1 77431 447 Biases in virial black hole masses: an SDSS perspective. SHEN Y., GREENE J.E., STRAUSS M.A., et al.
2008A&A...485..403O 128       D     X         4 67 13 Extinction properties of lensing galaxies. OESTMAN L., GOOBAR A. and MOERTSELL E.
2008MNRAS.387.1303S 128       D S   X         3 22 26 An analytic model for non-spherical lenses in covariant MOdified Newtonian Dynamics. SHAN H.Y., FEIX M., FAMAEY B., et al.
2008ApJ...685..725W 33 9 Lensed image angles: new statistical evidence for substructure. WILLIAMS L.L.R., FOLEY P., FARNSWORTH D., et al.
2008ApJ...689..755M 42           X         1 13 110 X-ray and optical microlensing in the lensed quasar PG 1115+080. MORGAN C.W., KOCHANEK C.S., DAI X., et al.
2008MNRAS.391..668W 1 2 7 On multiple Einstein rings. WERNER M.C., AN J. and EVANS N.W.
2008MNRAS.391.1973O 38           X         1 12 14 Mass models and environment of the new quadruply lensed quasar SDSS J1330+1810. OGURI M., INADA N., BLACKBURNE J.A., et al.
2009ApJ...697.1892P 92       D       C       3 11 36 The dark-matter fraction in the elliptical galaxy lensing the quasar PG 1115+080. POOLEY D., RAPPAPORT S., BLACKBURNE J., et al.
2008MmSAI..79.1271F 38           X         1 5 2 Probing the emitting region using anomalous lensed QSOs. FLOYD D.J.E., BATE N.F. and WEBSTER R.L.
2009MNRAS.398..233F 592 T K A     X C       14 12 46 The accretion disc in the quasar
SDSS J0924+0219.
FLOYD D.J.E., BATE N.F. and WEBSTER R.L.
2009A&A...505..385A viz 15       D               1 99836 35 The large quasar reference frame (LQRF). An optical representation of the ICRS. ANDREI A.H., SOUCHAY J., ZACHARIAS N., et al.
2009ApJ...706.1451M 167       D     X   F     4 70 117 Microlensing-based estimate of the mass fraction in compact objects in lens galaxies. MEDIAVILLA E., MUNOZ J.A., FALCO E., et al.
2010ApJ...709..552C 473       D     X   F     12 105 10 Identifying anomalies in gravitational lens time delays. CONGDON A.B., KEETON C.R. and NORDGREN C.E.
2010ApJ...712.1129M 103       D     X         3 12 270 The quasar accretion disk size-black hole mass relation. MORGAN C.W., KOCHANEK C.S., MORGAN N.D., et al.
2010AJ....139.2360S viz 80069 836 The Sloan Digital Sky Survey quasar catalog. V. Seventh data release. SCHNEIDER D.P., RICHARDS G.T., HALL P.B., et al.
2010ApJ...716.1579L 15       D               2 49 34 Cosmic evolution of virial and stellar mass in massive early-type galaxies. LAGATTUTA D.J., FASSNACHT C.D., AUGER M.W., et al.
2010A&A...518A..10V viz 15       D               2 168913 597 A catalogue of quasars and active nuclei: 13th edition. VERON-CETTY M.-P. and VERON P.
2010ApJ...724..400C 38           X         1 9 11 Gravitational nanolensing from subsolar mass dark matter halos. CHEN J. and KOUSHIAPPAS S.M.
2011MNRAS.410..860A viz 15       D               1 86770 182 A strong redshift dependence of the broad absorption line quasar fraction. ALLEN J.T., HEWETT P.C., MADDOX N., et al.
2010A&A...522A..95C 153           X         4 52 23 COSMOGRAIL: the COSmological MOnitoring of GRAvItational lenses. VIII. Deconvolution of high resolution near-IR images and simple mass models for 7 gravitationally lensed quasars. CHANTRY V., SLUSE D. and MAGAIN P.
2011ApJ...729...34B 554       D     X C       14 55 170 Sizes and temperature profiles of quasar accretion disks from chromatic microlensing. BLACKBURNE J.A., POOLEY D., RAPPAPORT S., et al.
2011MNRAS.410.2167F 15       D               2 22 35 Galaxy number counts and implications for strong lensing. FASSNACHT C.D., KOOPMANS L.V.E. and WONG K.C.
2011ApJ...731...71B 999   K A D S   X C       25 14 31 A microlensing measurement of dark matter fractions in three lensing galaxies. BATE N.F., FLOYD D.J.E., WEBSTER R.L., et al.
2011MNRAS.412.2631L 38           X         1 63 7 Discovery of universal outflow structures above and below the accretion disc plane in radio-quiet quasars. LOVEGROVE J., SCHILD R.E. and LEITER D.
2011ApJS..194...42R viz 15       D               1 27625 50 Supermassive black hole mass estimates using Sloan Digital Sky Survey quasar spectra at 0.7 < z < 2. RAFIEE A. and HALL P.B.
2011ApJS..194...45S viz 15       D               1 105786 1138 A catalog of quasar properties from Sloan Digital Sky Survey data release 7. SHEN Y., RICHARDS G.T., STRAUSS M.A., et al.
2011ApJ...738...96M 15       D               1 90 104 The microlensing properties of a sample of 87 lensed quasars. MOSQUERA A.M. and KOCHANEK C.S.
2011A&A...536A..29F 637 T K A     X C       15 7 6 VLT adaptive optics search for luminous substructures in the lens galaxy towards
SDSS J0924+0219.
FAURE C., SLUSE D., CANTALE N., et al.
2012ApJ...744...90B 15       D               1 27 8 A graphics processing unit-enabled, high-resolution cosmological microlensing parameter survey. BATE N.F. and FLUKE C.J.
2012ApJ...744..111P 133       D     X         4 16 39 X-ray and optical flux ratio anomalies in quadruply lensed quasars. II. Mapping the dark matter content in elliptical galaxies. POOLEY D., RAPPAPORT S., BLACKBURNE J.A., et al.
2012A&A...538A..43C 15       D               1 36 19 Constraints on cosmological models from lens redshift data. CAO S. and ZHU Z.-H.
2012A&A...538A..99S 364       D     X C       9 72 70 COSMOGRAIL: the COSmological MOnitoring of GRAvItational lenses. X. Modeling based on high-precision astrometry of a sample of 25 lensed quasars: consequences for ellipticity, shear, and astrometric anomalies. SLUSE D., CHANTRY V., MAGAIN P., et al.
2012MNRAS.420.2944W 93       D         F     2 41 5 The fundamental surface of quad lenses. WOLDESENBET A.G. and WILLIAMS L.L.R.
2012AJ....143..119I viz 93       D     X         3 50857 129 The Sloan Digital Sky Survey Quasar Lens Search. V. Final catalog from the seventh data release. INADA N., OGURI M., SHIN M.-S., et al.
2012ApJ...751..106J 54       D     X         2 24 43 A robust determination of the size of quasar accretion disks using gravitational microlensing. JIMENEZ-VICENTE J., MEDIAVILLA E., MUNOZ J.A., et al.
2012MNRAS.423..676A 39           X         1 10 13 Resolving the inner structure of QSO discs through fold-caustic-crossing events. ABOLMASOV P. and SHAKURA N.I.
2012ApJ...753..106M viz 15       D               1 89523 227 A description of quasar variability measured using repeated SDSS and POSS imaging. MacLEOD C.L., IVEZIC Z., SESAR B., et al.
2012ApJ...755...24C 1897   K A D     X C       49 13 39 X-ray monitoring of gravitational lenses with Chandra. CHEN B., DAI X., KOCHANEK C.S., et al.
2012A&A...544A..62S viz 326       D     X         9 47 107 Microlensing of the broad line region in 17 lensed quasars. SLUSE D., HUTSEMEKERS D., COURBIN F., et al.
2012MNRAS.427.1867A 480       D     X C F     11 21 10 Microlensing evidence for super-Eddington disc accretion in quasars. ABOLMASOV P. and SHAKURA N.I.
2013ApJ...764..160G 133       D     X C       3 53 44 Microlensing of quasar broad emission lines: constraints on broad line region size. GUERRAS E., MEDIAVILLA E., JIMENEZ-VICENTE J., et al.
2013ApJS..206....4K viz 16       D               1 119612 109 Mean spectral energy distributions and bolometric corrections for luminous quasars. KRAWCZYK C.M., RICHARDS G.T., MEHTA S.S., et al.
2013ApJ...769...53M 83               F     12 130 The structure of the X-ray and optical emitting regions of the lensed quasar Q 2237+0305. MOSQUERA A.M., KOCHANEK C.S., CHEN B., et al.
2013MNRAS.434..832V 55       D     X         2 9 7 A new parameter space study of cosmological microlensing. VERNARDOS G. and FLUKE C.J.
2013ApJ...778..123G 16       D               3 41 9 Microlensing of quasar ultraviolet iron emission. GUERRAS E., MEDIAVILLA E., JIMENEZ-VICENTE J., et al.
2013ApJ...779..161S viz 16       D               1 79596 24 Precious metals in SDSS quasar spectra. II. Tracking the evolution of strong, 0.4 < z < 2.3 Mg II absorbers with thousands of systems. SEYFFERT E.N., COOKSEY K.L., SIMCOE R.A., et al.
2013A&A...559A..37S 88             C       1 8 161 Mass-sheet degeneracy, power-law models and external convergence: Impact on the determination of the Hubble constant from gravitational lensing. SCHNEIDER P. and SLUSE D.
2014ApJS..211...16V 40           X         1 4 15 GERLUMPH data release 1: high-resolution cosmological microlensing magnification maps and eResearch tools. VERNARDOS G., FLUKE C.J., BATE N.F., et al.
2014ApJ...793...96S 489       D     X C       12 20 78 A calibration of the stellar mass fundamental plane at z ∼ 0.5 using the micro-lensing-induced flux ratio anomalies of macro-lensed quasars. SCHECHTER P.L., POOLEY D., BLACKBURNE J.A., et al.
2014MNRAS.442.1090H 173       D     X C       4 16 6 Modelling spikes in quasar accretion disc temperature. HALL P.B., NOORDEH E.S., CHAJET L.S., et al.
2015ApJ...799..149J 16       D               1 64 30 Dark matter mass fraction in lens galaxies: new estimates from microlensing. JIMENEZ-VICENTE J., MEDIAVILLA E., KOCHANEK C.S., et al.
2015ApJ...805..161W 56       D     X         2 31 8 Broad iron emission from gravitationally lensed quasars observed by Chandra. WALTON D.J., REYNOLDS M.T., MILLER J.M., et al.
2015ApJ...806..251J 175       D     X C       4 74 17 Probing the dark matter radial profile in lens galaxies and the size of X-ray emitting region in quasars with microlensing. JIMENEZ-VICENTE J., MEDIAVILLA E., KOCHANEK C.S., et al.
2015ApJ...806..258M viz 980 T   A     X C       23 6 44 A consistent picture emerges: a compact X-ray continuum emission region in the gravitationally lensed quasar
SDSS J0924+0219.
MacLEOD C.L., MORGAN C.W., MOSQUERA A., et al.
2015MNRAS.451.4375F 18       D               1 57 231 Properties of AGN coronae in the NuSTAR era. FABIAN A.C., LOHFINK A., KARA E., et al.
2015MNRAS.454..287J 357     A D S   X C       8 45 23 Observations of radio-quiet quasars at 10-mas resolution by use of gravitational lensing. JACKSON N., TAGORE A.S., ROBERTS C., et al.
2016A&A...585A..84B viz 96       D       C       7 7 2 Analysis of luminosity distributions and the shape parameters of strong gravitational lensing elliptical galaxies. BIERNAUX J., MAGAIN P., SLUSE D., et al.
2016ApJ...824...53C 40           X         1 9 4 The wide-angle outflow of the lensed z = 1.51 AGN HS 0810+2554. CHARTAS G., CAPPI M., HAMANN F., et al.
2016MNRAS.461.2346G viz 16       D               1 68279 3 Covering factors of the dusty obscurers in radio-loud and radio-quiet quasars. GUPTA M., SIKORA M. and NALEWAJKO K.
2016MNRAS.462.4094S 217       D S   X         5 105 55 Pan-STARRS and PESSTO search for an optical counterpart to the LIGO gravitational-wave source GW150914. SMARTT S.J., CHAMBERS K.C., SMITH K.W., 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.
2017ApJ...836..206G 789       D     X C       19 7 9 Extended X-ray monitoring of gravitational lenses with Chandra and joint constraints on X-ray emission regions. GUERRAS E., DAI X., STEELE S., et al.
2017A&A...600A..79A 12 2 Apparent quasar disc sizes in the "bird's nest" paradigm. ABOLMASOV P.
2017ApJ...843..118K 42           X         1 3 5 Simulations of the Fe Kα energy spectra from gravitationally microlensed quasars. KRAWCZYNSKI H. and CHARTAS G.
2017A&A...604A..46B 244           X         6 7 ~ Analysis of luminosity distributions of strong lensing galaxies: subtraction of diffuse lensed signal. BIERNAUX J., MAGAIN P. and HAURET C.
2017ApJ...847...96L 122           X C       2 9 5 Centrally concentrated X-ray radiation from an extended accreting corona in active galactic nuclei. LIU B.F., TAAM R.E., QIAO E., et al.
2017ApJ...851...88K 16       D               2 26 6 Resolving the internal structure of circumgalactic medium using gravitationally lensed quasars. KOYAMADA S., MISAWA T., INADA N., et al.
2017MNRAS.472...90D 16       D               1 146 14 H0LiCOW VII: cosmic evolution of the correlation between black hole mass and host galaxy luminosity. DING X., TREU T., SUYU S.H., et al.
2018ApJS..235...11C viz 16       D               1 190674 1 The associated absorption features in quasar spectra of the Sloan Digital Sky Survey. I. Mg II absorption doublets. CHEN Z.-F., HUANG W.-R., PANG T.-T., 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.
2018MNRAS.476.5075S 99       D       C       3 104 40 Gravitational lensing reveals extreme dust-obscured star formation in quasar host galaxies. STACEY H.R., McKEAN J.P., ROBERTSON N.C., 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.
2018ApJ...862..104M 82           X         2 11 2 Systematic redshift of the Fe III UV lines in quasars: measuring supermassive black hole masses under the gravitational redshift hypothesis. MEDIAVILLA E., JIMENEZ-VICENTE J., FIAN C., et al.
2018MNRAS.480.1163S 141       D S   X         3 11 16 KiDS-SQuaD: The KiDS Strongly lensed Quasar Detection project. SPINIELLO C., AGNELLO A., NAPOLITANO N.R., et al.
2018ApJ...869..106M viz 123           X C       2 9 5 Accretion disk size measurement and time delays in the lensed quasar WFI 2033-4723. MORGAN C.W., HYER G.E., BONVIN V., et al.
2019MNRAS.483.2275L 17       D               1 16 3 Reconciling the quasar microlensing disc size problem with a wind model of active galactic nucleus. LI Y.-P., YUAN F. and DAI X.
2019ApJ...885...77B 42           X         1 14 ~ Confirmation of planet-mass objects in extragalactic systems. BHATIANI S., DAI X. and GUERRAS E.
2020ApJ...890....3R 1005 T   A S   X C       21 13 ~ Microlensing analysis for the gravitational lens systems
SDSS0924+0219, Q1355-2257, and SDSS1029+2623.
ROJAS K., MOTTA V., MEDIAVILLA E., et al.
2020ApJ...895...93C 17       D               1 16 ~ Quasar microlensing variability studies favor shallow accretion disk temperature profiles. CORNACHIONE M.A. and MORGAN C.W.
2020ApJ...896..111G 656       D     X C       15 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.
2020MNRAS.496..138B 1217 T K A S   X C       26 9 ~ VLA and ALMA observations of the lensed radio-quiet quasar
SDSS J0924+0219: a molecular structure in a 3 µJy radio source.
BADOLE S., JACKSON N., HARTLEY P., et al.
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.
2020MNRAS.498.6013A viz 17       D               1 197 ~ Testing dark energy models with a new sample of strong-lensing systems. AMANTE M.H., MAGANA J., MOTTA V., 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.
2020ApJ...905....7C viz 43           X         1 5 ~ Near-infrared and optical continuum emission region size measurements in the gravitationally lensed quasars Q0957+561 and SBS0909+532. CORNACHIONE M.A., MORGAN C.W., BURGER H.R., et al.
2021MNRAS.500.3667S 976       D S   X C       21 30 32 The rocky road to quiescence: compaction and quenching of quasar host galaxies at z ∼ 2. STACEY H.R., McKEAN J.P., POWELL D.M., et al.
2021AJ....161...45O viz 17       D               1 727 ~ The third data release of the KODIAQ survey. O'MEARA J.M., LEHNER N., HOWK J.C., et al.
2021A&A...653A.109F 104       D       C       3 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.
2021MNRAS.508.4625H 148       D     X         4 12 4 Using strong lensing to understand the microJy radio emission in two radio quiet quasars at redshift 1.7. HARTLEY P., JACKSON N., BADOLE S., et al.
2021A&A...655A.109B viz 17       D               6 2333 22 The Chandra view of the relation between X-ray and UV emission in quasars. BISOGNI S., LUSSO E., CIVANO F., et al.
2021ApJ...922...70W 174       S   X         3 3 ~ "Worst-case" microlensing in the identification and modeling of lensed quasars. WEISENBACH L., SCHECHTER P.L. and PONTULA S.
2022A&A...659A.127V 47           X         1 8 16 TDCOSMO. VII. Boxyness/discyness in lensing galaxies: Detectability and impact on H0. VAN DE VYVERE L., GOMER M.R., SLUSE D., et al.
2022MNRAS.513.2349C 1165 T   A D S   X C F     23 9 ~ SHARP - VIII.

J0924+0219
lens mass distribution and time-delay prediction through adaptive-optics imaging.
CHEN G.C.-F., FASSNACHT C.D., SUYU S.H., et al.
2022ApJ...929..123E 152       D     X C       3 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...939L...2Z 227           X C       4 2 6 Corrections to Estimated Accretion Disk Size due to Color Correction, Disk Truncation, and Disk Wind. ZDZIARSKI A.A., YOU B. and SZANECKI M.
2022MNRAS.517.3377S 108       D         F     2 17 6 Red quasars blow out molecular gas from galaxies during the peak of cosmic star formation. STACEY H.R., COSTA T., McKEAN J.P., et al.
2022A&A...666A..11P viz 18       D               1 16 2 X-ray illuminated accretion discs and quasar microlensing disc sizes. PAPADAKIS I.E., DOVCIAK M. and KAMMOUN E.S.
2023ApJ...943...25G 187           X C       3 11 5 A Highly Magnified Gravitationally Lensed Red QSO at z = 2.5 with a Significant Flux Ratio Anomaly. GLIKMAN E., RUSU C.E., CHEN G.C.-F., et al.
2023A&A...672A.123H viz 187             C F     2 7 3 Discovering strongly lensed quasar candidates with catalogue-based methods from DESI Legacy Surveys. HE Z., LI N., CAO X., et al.
2023MNRAS.522.1863P 578       D     X   F     12 17 ~ Constraints on the inner regions of lensing galaxies from central images using a recent AGN offset distribution. PERERA D., WILLIAMS L.L.R. and SCARLATA C.
2023MNRAS.523...23W 159       D     X   F     3 26 ~ ALMA High-Level Data Products: submillimetre counterparts of SDSS quasars in the ALMA footprint. WONG A., HATZIMINAOGLOU E., BORKAR A., et al.
2023A&A...676A..95W 1008 T   A S   X C       19 1 ~ TDCOSMO XIV. Practical techniques for estimating external convergence of strong gravitational lens systems and applications to the
SDSS
J0924+0219
system.
WELLS P., FASSNACHT C.D. and RUSU C.E.
2023A&A...677A..94F 19       D               1 10 ~ Diffuse emission in microlensed quasars and its implications for accretion-disk physics. FIAN C., CHELOUCHE D. and KASPI S.
2023A&A...680A..51M 578       D     X         13 33 ~ Black hole masses for 14 gravitationally lensed quasars. MELO A., MOTTA V., MEJIA-RESTREPO J., et al.
2024A&A...683A.211F 420       D     X C       8 28 ~ At the end of cosmic noon: Short gas depletion times in unobscured quasars at z ∼ 1. FRIAS CASTILLO M., RYBAK M., HODGE J., et al.

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