8C 0958+561 , the SIMBAD biblio

8C 0958+561 , the SIMBAD biblio (703 results) C.D.S. - SIMBAD4 rel 1.7 - 2021.02.27CET08:54:25

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Title First 3 Authors
2020A&A...633A.107H 373           X C       7 9 ~ The signature of primordial black holes in the dark matter halos of galaxies. HAWKINS M.R.S.
2020A&A...640A.105M viz 93           X         2 44 ~ COSMOGRAIL. XIX. Time delays in 18 strongly lensed quasars from 15 years of optical monitoring. MILLON M., COURBIN F., BONVIN V., et al.
2020AJ....160..265H 401     A S   X C       7 1 ~ Modeling stochastic variability in multiband time-series data. HU Z. and TAK H.
2020ApJ...888L..25C 47           X         1 1 ~ Precise measurements of the speed of light with high-redshift quasars: ultra-compact radio structure and strong gravitational lensing. CAO S., QI J., BIESIADA M., et al.
2020ApJ...889..186Z 47           X         1 1 ~ Model-independent estimations for the cosmic curvature from the latest strong gravitational lensing systems. ZHOU H. and LI Z.
2020ApJ...892...62D 47           X         1 1 ~ An accurate analytic mass model for lensing galaxies. DU W., ZHAO G.-B., FAN Z., et al.
2020ApJ...894..153D 1959     A D     X C F     41 13 ~ X-ray monitoring of gravitationally lensed radio-loud quasars with Chandra. DOGRUEL M.B., DAI X., GUERRAS E., et al.
2020ApJ...895...93C 19       D               1 16 ~ Quasar microlensing variability studies favor shallow accretion disk temperature profiles. CORNACHIONE M.A. and MORGAN C.W.
2020ApJ...905....7C 3406 T   A D     X C       72 5 ~ Near-infrared and optical continuum emission region size measurements in the gravitationally lensed quasars

and SBS0909+532.
2020MNRAS.493.3331N 47           X         1 3 ~ hybrid-LENSTOOL: a self-consistent algorithm to model galaxy clusters with strong- and weak-lensing simultaneously. NIEMIEC A., JAUZAC M., JULLO E., et al.
2020MNRAS.497..556H 47           X         1 1 ~ Deep learning for strong lensing search: tests of the convolutional neural networks and new candidates from KiDS DR3. HE Z., ER X., LONG Q., et al.
2019A&A...621A..91W 45           X         1 8 ~ Multiply imaged time-varying sources behind galaxy clusters. Comparing fast radio bursts to QSOs, SNe, and GRBs. WAGNER J., LIESENBORGS J. and EICHLER D.
2019ApJ...886...83K 152       D     X         4 32 ~ Probing structure in cold gas at z <= 1 with gravitationally lensed quasar sight lines. KULKARNI V.P., CASHMAN F.H., LOPEZ S., et al.
2019ApJS..242....4D viz 18       D               1 9524 ~ Two new catalogs of blazar candidates in the WISE Infrared sky. D'ABRUSCO R., ALVAREZ CRESPO N., MASSARO F., et al.
2019MNRAS.483.1104Q 45           X         1 1 ~ The distance sum rule from strong lensing systems and quasars - test of cosmic curvature and beyond. QI J.-Z., CAO S., ZHANG S., et al.
2019MNRAS.484.3552B 3073 T K A S   X C F     65 2 ~ Revealing the non-linear behaviour of the lensed quasar
2019MNRAS.484.4337T 45           X         1 1 ~ Probing cosmic acceleration by strong gravitational lensing systems. TU Z.L., HU J. and WANG F.Y.
2019MNRAS.487.5263D 45           X         1 2 ~ Using convolutional neural networks to identify gravitational lenses in astronomical images. DAVIES A., SERJEANT S. and BROMLEY J.M.
2019MNRAS.489.2525A 45           X         1 14 ~ Quasar lenses in the south: searches over the DES public footprint. AGNELLO A. and SPINIELLO C.
2019MNRAS.489L..32M 45           X         1 1 ~ Machine learning and Kolmogorov analysis to reveal gravitational lenses. MIRZOYAN S.S., KHACHATRYAN H., YEGORIAN G., et al.
2018A&A...613A...6W 45           X         1 3 3 Generalised model-independent characterisation of strong gravitational lenses. II. Transformation matrix between multiple images. WAGNER J. and TESSORE N.
2018A&A...613A..51P viz 17       D               1 525779 26 The Sloan Digital Sky Survey Quasar Catalog: Fourteenth data release. PARIS I., PETITJEAN P., AUBOURG E., et al.
2018A&A...616A.118G viz 2002       S   X C       44 30 ~ New database for a sample of optically bright lensed quasars in the northern hemisphere. GIL-MERINO R., GOICOECHEA L.J., SHALYAPIN V.N., et al.
2018ApJ...859...50F 844       D     X C       19 76 2 Microlensing and intrinsic variability of the broad emission lines of lensed quasars. FIAN C., GUERRAS E., MEDIAVILLA E., et al.
2018ApJ...862..104M 87           X         2 11 ~ 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.
2018ApJ...867...50C 44           X         1 2 ~ Testing the speed of light over cosmological distances: the combination of strongly lensed and unlensed Type Ia supernovae. CAO S., QI J., BIESIADA M., et al.
2018ApJ...869..106M viz 131           X C       2 9 ~ Accretion disk size measurement and time delays in the lensed quasar WFI 2033-4723. MORGAN C.W., HYER G.E., BONVIN V., et al.
2018ApJS..235...11C viz 17       D               1 98125 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.
2018MNRAS.473...80T 47           X         1 5 15 Microlensing makes lensed quasar time delays significantly time variable. TIE S.S. and KOCHANEK C.S.
2018MNRAS.474.3391A 45           X         1 8 11 Discovery and first models of the quadruply lensed quasar SDSS J1433+6007. AGNELLO A., GRILLO C., JONES T., et al.
2018MNRAS.476..663K 44           X         1 9 3 A gravitationally lensed quasar discovered in OGLE. KOSTRZEWA-RUTKOWSKA Z., KOZLOWSKI S., LEMON C., et al.
2018MNRAS.476.5075S 322       D     X C       7 103 6 Gravitational lensing reveals extreme dust-obscured star formation in quasar host galaxies. STACEY H.R., McKEAN J.P., ROBERTSON N.C., et al.
2017A&A...597A..79P viz 17       D               1 302146 153 The Sloan Digital Sky Survey Quasar Catalog: Twelfth data release. PARIS I., PETITJEAN P., ROSS N.P., et al.
2017AJ....154..114O viz 17       D               5 298 12 The second data release of the KODIAQ survey. O'MEARA J.M., LEHNER N., HOWK J.C., et al.
2017ApJ...834...75X 48           X         1 2 10 Revisiting studies of the statistical property of a strong gravitational lens system and model-independent constraint on the curvature of the Universe. XIA J.-Q., YU H., WANG G.-J., et al.
2017ApJ...850..102G 43           X         1 5 ~ Gravitational lensing time delays with massive photons. GLICENSTEIN J.-F.
2017MNRAS.468.3757W 43           X         1 4 2 SDSS J1640+1932: a spectacular galaxy-quasar strong lens system. WANG L., SHU Y., LI R., et al.
2017MNRAS.471.2013A 43           X         1 22 14 Quasar lenses and galactic streams: outlier selection and Gaia multiplet detection. AGNELLO A.
2017MNRAS.471.3378H 44           X         1 3 4 Support vector machine classification of strong gravitational lenses. HARTLEY P., FLAMARY R., JACKSON N., et al.
2017MNRAS.472...90D 17       D               1 146 9 H0LiCOW VII: cosmic evolution of the correlation between black hole mass and host galaxy luminosity. DING X., TREU T., SUYU S.H., et al.
2016ApJ...818..113N viz 17       D               1 50 33 The H I content of the Universe over the past 10 GYRS. NEELEMAN M., PROCHASKA J.X., RIBAUDO J., et al.
2016ApJ...832...46M 17       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.
2016MNRAS.456..870B 226       D     X         6 26 8 Light versus dark in strong-lens galaxies: dark matter haloes that are rounder than their stars. BRUDERER C., READ J.I., COLES J.P., et al.
2016MNRAS.459..573A 794     A D     X C F     18 8 1 Kernel regression estimates of time delays between gravitationally lensed fluxes. AL OTAIBI S., TINO P., CUEVAS-TELLO J.C., et al.
2016MNRAS.460.1428C 125           X         3 41 1 Ultraviolet Fe II emission in fainter quasars: luminosity dependences, and the influence of environments. CLOWES R.G., HABERZETTL L., RAGHUNATHAN S., et al.
2016MNRAS.461.2192C 43           X         1 6 11 Limits on the power-law mass and luminosity density profiles of elliptical galaxies from gravitational lensing systems. CAO S., BIESIADA M., YAO M., et al.
2016MNRAS.461.3714T 125           X         3 11 3 A simple method to determine time delays in the presence of microlensing: application to HE 0435-1112 and PG 1115+080. TSVETKOVA V.S., SHULGA V.M. and BERDINA L.A.
2016MNRAS.462.1405J 43           X         1 2 2 The influence of weak lensing on measurements of the Hubble constant with quad-image gravitational lenses. JAROSZYNSKI M. and SKOWRON J.
2015A&A...580A..38R 346       D     X C       8 50 19 H0 from ten well-measured time delay lenses. RATHNA KUMAR S., STALIN C.S. and PRABHU T.P.
2015ARep...59...12S 12 2 Determining the time delays in the gravitational lens PG 1115+080. SHIMANOVSKAYA E.V., OKNYANSKII V.L. and ARTAMONOV B.P.
2015ApJ...799...48B 99       D     X         3 20 5 Strongly lensed jets, time delays, and the value of H0. BARNACKA A., GELLER M.J., DELL'ANTONIO I.P., et al.
2015ApJ...799..149J 16       D               1 64 23 Dark matter mass fraction in lens galaxies: new estimates from microlensing. JIMENEZ-VICENTE J., MEDIAVILLA E., KOCHANEK C.S., et al.
2015ApJ...799..168D 49           X         1 2 17 Strong lens time delay challenge. I. Experimental design. DOBLER G., FASSNACHT C.D., TREU T., et al.
2015ApJ...805..161W 58       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 16       D               2 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...807..138C 51           X         1 2 20 Chitah: strong-gravitational-lens hunter in imaging surveys. CHAN J.H.H., SUYU S.H., CHIUEH T., et al.
2015ApJS..219...29M viz 41           X         1 10653 13 A spectroscopic survey of the fields of 28 strong gravitational lenses. MOMCHEVA I.G., WILLIAMS K.A., COOL R.J., et al.
2015MNRAS.451..383W 49           X         1 1 8 Separating weak lensing and intrinsic alignments using radio observations. WHITTAKER L., BROWN M.L. and BATTYE R.A.
2015MNRAS.452.2423Y 99       D     X         3 126 10 Cosmological test using strong gravitational lensing systems. YUAN C.C. and WANG F.Y.
2015MNRAS.454..862W 42           X         1 2 3 Model-free analysis of quadruply imaged gravitationally lensed systems and substructured galaxies. WOLDESENBET A.G. and WILLIAMS L.L.R.
2015MNRAS.454.1404S 41           X         1 18 10 The 'shook up' galaxy NGC 3079: the complex interplay between HI, activity and environment. SHAFI N., OOSTERLOO T.A., MORGANTI R., et al.
2015Sci...347.1123K 18 5 90 Multiple images of a highly magnified supernova formed by an early-type cluster galaxy lens. KELLY P.L., RODNEY S.A., TREU T., et al.
2014A&A...568A.116S 41           X         1 7 6 Deep optical imaging and spectroscopy of the lens system SDSS J1339+1310. SHALYAPIN V.N. and GOICOECHEA L.J.
2014ApJ...783...47J 139       D     X         4 26 33 The average size and temperature profile of quasar accretion disks. JIMENEZ-VICENTE J., MEDIAVILLA E., KOCHANEK C.S., et al.
2014ApJ...788..190W 17       D               1 23 24 A comparison of cosmological models using time delay lenses. WEI J.-J., WU X.-F. and MELIA F.
2014ApJS..212...15F viz 16       D               1 24935 42 A broadband polarization catalog of extragalactic radio sources. FARNES J.S., GAENSLER B.M. and CARRETTI E.
2014ApJS..215...14D viz 16       D               1 7855 45 The WISE blazar-like radio-loud sources: an all-sky catalog of candidate γ-ray blazars. D'ABRUSCO R., MASSARO F., PAGGI A., et al.
2014MNRAS.437..600S 97       D     X         3 40 30 Hubble constant and dark energy inferred from free-form determined time delay distances. SERENO M. and PARAFICZ D.
2014MNRAS.445.2181C 42           X         1 5 9 Gravitational lens recovery with glass: measuring the mass profile and shape of a lens. COLES J.P., READ J.I. and SAHA P.
2013A&A...553A.120T 60           X         1 3 61 COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses. XI. Techniques for time delay measurement in presence of microlensing. TEWES M., COURBIN F. and MEYLAN G.
2013A&A...553A.121E viz 43           X         1 12 36 COSMOGRAIL: the COSmological MOnitoring. of GRAvItational Lenses. XII. Time delays of the doubly lensed quasars SDSS J1206+4332 and HS 2209+1914. EULAERS E., TEWES M., MAGAIN P., et al.
2013A&A...556A..22T viz 48           X         1 11 90 COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses. XIII. Time delays and 9-yr optical monitoring of the lensed quasar RX J1131-1231. TEWES M., COURBIN F., MEYLAN G., et al.
2013A&A...559A..37S 130           X         3 8 80 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.
2013ApJ...764..160G 16       D               6 53 44 Microlensing of quasar broad emission lines: constraints on broad line region size. GUERRAS E., MEDIAVILLA E., JIMENEZ-VICENTE J., et al.
2013ApJ...765..139R 80           X         2 12 4 The quasar-galaxy cross SDSS J1320+1644: a probable large-separation lensed quasar. RUSU C.E., OGURI M., IYE M., et al.
2013ApJ...774...69H 47           X         1 2 15 Time delay and accretion disk size measurements in the lensed quasar SBS 0909+532 from multiwavelength microlensing analysis. HAINLINE L.J., MORGAN C.W., MacLEOD C.L., et al.
2013ApJ...778..123G 16       D               6 41 9 Microlensing of quasar ultraviolet iron emission. GUERRAS E., MEDIAVILLA E., JIMENEZ-VICENTE J., et al.
2013MNRAS.431.1528B 257       D     X         7 22 4 Bayesian approach to gravitational lens model selection: constraining H0 with a selected sample of strong lenses. BALMES I. and CORASANITI P.S.
2012A&A...538A..43C 95       D     X         3 36 19 Constraints on cosmological models from lens redshift data. CAO S. and ZHU Z.-H.
2012A&A...538A..99S 40           X         1 72 45 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.
2012A&A...540A.132S viz 1256 T K A S O X C       29 2 5 A 5.5-year robotic optical monitoring of
Q0957+561: substructure in a non-local cD galaxy.
2012ApJ...744...47G 1772 T K A S   X C       42 4 14 Accretion onto the supermassive black hole in the high-redshift radio-loud
2012ApJ...744...90B 16       D               1 27 8 A graphics processing unit-enabled, high-resolution cosmological microlensing parameter survey. BATE N.F. and FLUKE C.J.
2012ApJ...744..104H 263 T K A     X C       5 5 11
A new microlensing event in the doubly imaged quasar
Q 0957+561.
2012ApJ...751..106J 16       D               1 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.
2012ApJ...755...24C 41           X         1 13 35 X-ray monitoring of gravitational lenses with Chandra. CHEN B., DAI X., KOCHANEK C.S., et al.
2012ApJ...755...31C viz 40           X         1 311 26 Testing the dark energy with gravitational lensing statistics. CAO S., COVONE G. and ZHU Z.-H.
2012ApJ...755...82M 1033   K A D S   X C       25 27 21 Measuring microlensing using spectra of multiply lensed quasars. MOTTA V., MEDIAVILLA E., FALCO E., et al.
2012MNRAS.420.3574G 40           X         1 4 6 Probing planetary mass dark matter in galaxies: gravitational nanolensing of multiply imaged quasars. GARSDEN H., BATE N.F. and LEWIS G.F.
2012MNRAS.421..971R 56       D     X         2 19 6 Investigating Mg II absorption in paired quasar sight-lines. ROGERSON J.A. and HALL P.B.
2012MNRAS.424..325J 81           X         2 2 11 Background, foreground and nearby matter influence on strong gravitational lenses. JAROSZYNSKI M. and KOSTRZEWA-RUTKOWSKA Z.
2012MNRAS.424.2864C 47           X         1 2 28 Constraining the dark energy equation of state with double-source plane strong lenses. COLLETT T.E., AUGER M.W., BELOKUROV V., et al.
2012MNRAS.425.3077L 45           X         1 1 10 A sampling strategy for high-dimensional spaces applied to free-form gravitational lensing. LUBINI M. and COLES J.
2012MmSAI..83...54B 40           X         1 11 2 Gravitational lens. BISNOVATYI-KOGAN G.S. and TSUPKO O.Y.
2011A&ARv..19...47K 79           X         2 58 112 Cluster lenses. KNEIB J.-P. and NATARAJAN P.
2011ApJ...730..108R 16       D               1 49 34 Molecular gas in lensed z >2 quasar host galaxies and the star formation law for galaxies with luminous active galactic nuclei. RIECHERS D.A.
2011ApJ...738...96M 55       D     X         2 90 67 The microlensing properties of a sample of 87 lensed quasars. MOSQUERA A.M. and KOCHANEK C.S.
2011ApJ...740...97L 118           X C       2 27 23 Resolving the baryon-fraction profile in lensing galaxies. LEIER D., FERRERAS I., SAHA P., et al.
2011ApJ...742...93A 332       D     X         9 21 89 Black hole mass estimates based on C IV are consistent with those based on the Balmer lines. ASSEF R.J., DENNEY K.D., KOCHANEK C.S., et al.
2011ApJS..197...24M viz 16       D               1 108 24 Large-scale extragalactic jets in the Chandra era. I. Data reduction and analysis. MASSARO F., HARRIS D.E. and CHEUNG C.C.
2011BaltA..20..125H 4 4 Towards the automatic estimation of time delays of gravitational lenses. HIRV A., OLSPERT N. and PELT J.
2011ChA&A..35..218Y 10 0 A new method for processing the correlation of light variation time delays. YUAN Y.-H.
2011JRASC.105...61F 16 0 Challenging Einstein: gravitational lensing as a test of general relativity. FRIESEN J., ROGERS A. and FIEGE J.
2011MNRAS.412..900M 39           X         1 7 0 The final candidate from the JVAS/CLASS search for 6–15 arcsec image separation lensing. McKEAN J.P.
2011MNRAS.412.2631L 275           X         7 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.
2011MNRAS.413..887C 119           X   F     2 3 7 The coevolution of the velocity and mass functions of galaxies and dark haloes. CHAE K.-H.
2011MNRAS.413.2121M 16       D               1 43 1 Cusped mass density profiles and magnification ratios of double-image gravitational lenses. MUTKA P.T.
2011MNRAS.415.2744H 157           X C       3 9 17 The case for primordial black holes as dark matter. HAWKINS M.R.S.
2011RAA....11.1003Q 39           X         1 6 0 The effects of BCGs on the statistics of large-separation lensed quasars by clusters. QI H. and CHEN D.-M.
2010A&A...511A..53V viz 16       D               1 107466 32 The SPECFIND V2.0 catalogue of radio cross-identifications and spectra. SPECFIND meets the Virtual Observatory. VOLLMER B., GASSMANN B., DERRIERE S., et al.
2010A&A...518A..10V viz 94       D     X         3 168912 373 A catalogue of quasars and active nuclei: 13th edition. VERON-CETTY M.-P. and VERON P.
2010A&A...520A.113B viz 16       D               1 450 33 VLBI observations of optically-bright extragalactic radio sources for the alignment of the radio frame with the future Gaia frame. I. Source detection. BOURDA G., CHARLOT P., PORCAS R.W., et al.
2010AJ....140..403I viz 16       D               1 146 25 The Sloan Digital Sky Survey Quasar Lens Search. IV. Statistical lens sample from the fifth data release. INADA N., OGURI M., SHIN M.-S., et al.
2010ApJ...709..937G 173       D     X   F     4 19 60 Redshift evolution in black hole-bulge relations: testing C IV-based black hole masses. GREENE J.E., PENG C.Y. and LUDWIG R.R.
2010ApJ...711..201S 45           X         1 17 224 Dissecting the gravitational lens B1608+656. II. Precision measurements of the Hubble constant, spatial curvature, and the dark energy equation of state. SUYU S.H., MARSHALL P.J., AUGER M.W., et al.
2010ApJ...711..246F 531 T K A     X C F     11 15 45 Improved constraints on the gravitational lens
Q0957+561. II. Strong lensing.
2010ApJ...712.1378P 95       D     X   F     2 20 42 The Hubble constant inferred from 18 time-delay lenses. PARAFICZ D. and HJORTH J.
2010ApJ...716.1579L 39           X         1 48 34 Cosmic evolution of virial and stellar mass in massive early-type galaxies. LAGATTUTA D.J., FASSNACHT C.D., AUGER M.W., et al.
2010ApJ...719.1672H viz 39           X         1 60 90 Binary quasars at high redshift. I. 24 new quasar pairs at z ∼ 3-4. HENNAWI J.F., MYERS A.D., SHEN Y., et al.
2010ApJ...724..400C 39           X         1 9 11 Gravitational nanolensing from subsolar mass dark matter halos. CHEN J. and KOUSHIAPPAS S.M.
2010MNRAS.401.2805K 78           X         2 12 13 Intrinsic quasar variability and time delay determination in the lensed quasar UM673. KOPTELOVA E., OKNYANSKIJ V.L., ARTAMONOV B.P., et al.
2010MNRAS.402...35C 250       D     X   F     6 16 25 New searches for HI 21 cm in damped Lyman α absorption systems. CURRAN S.J., TZANAVARIS P., DARLING J.K., et al.
2010MNRAS.405.2579O 123           X         2 2 180 Gravitationally lensed quasars and supernovae in future wide-field optical imaging surveys. OGURI M. and MARSHALL P.J.
2010MNRAS.409..679C 17       D               1 12 33 A newly discovered DLA and associated Lyα emission in the spectra of the gravitationally lensed quasar UM673A,B. COOKE R., PETTINI M., STEIDEL C.C., et al.
2010MmSAI..81..138K 55       D     X         2 20 3 Multiwavelengths observations of lensed quasars: interband time delays. KOPTELOVA E., OKNYANSKIJ V., ARTAMONOV B., et al.
2010MmSAI..81..144B 117           X C       2 10 0 The gravitational lens as a radiospectrometer. BISNOVATYI-KOGAN G.
2010NewA...15...16T 42           X         1 4 29 Teraflop per second gravitational lensing ray-shooting using graphics processing units THOMPSON A.C., FLUKE C.J., BARNES D.G., et al.
2009A&A...501..475T 41           X         1 4 19 The mass profile of early-type galaxies in overdense environments: the case of the double source-plane gravitational lens SL2SJ02176-0513. TU H., GAVAZZI R., LIMOUSIN M., et al.
2009AJ....138..421S 39           X         1 4 5 Reverberation in the UV-optical continuum brightness fluctuations of MACHO quasar 13.5962.237. SCHILD R.E., LOVEGROVE J. and PROTOPAPAS P.
2009ATel.2228....1G 1 2 4 A prominent fluctuation in the optical brightness of Q0957+561A and prediction of the Q0957+561B optical variability in the first semester of 2010. GOICOECHEA L.J. and SHALYAPIN V.N.
2009ApJ...693..174C 42           X         1 12 78 X-ray microlensing in RXJ1131-1231 and HE1104-1805. CHARTAS G., KOCHANEK C.S., DAI X., et al.
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1997A&G....38e..10W 11 7 The quest for the golden lens. WILLIAMS L.L.R. and SCHECHTER P.L.
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1997ApJ...486..117I 121 3 Radio polarization in EGRET blazars. ILER A.L., SCHACHTER J.F. and BIRKINSHAW M.
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1995ApJ...444...64S 182 107 The Hubble Space Telescope quasar absorption line key project. V. Redshift evolution of Lyman limit absorption in the spectra of a large sample of quasars. STENGLER-LARREA E.A., BOKSENBERG A., STEIDEL C.C., et al.
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1995ApJ...453..545K 3 9 92 Gravitational lensing limits on cold dark matter and its variants. KOCHANEK C.S.
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1988ApJ...334...42G 73 T                   1 4 49 VLBI observations of the gravitational lens system
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1988BAAS...20Q1001L 70 T                   1 2 3 VLA measurement of the time delay in the gravitationally lensed double quasar
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Q 0957+561.
1986IAUS..119..517B 8 8 Gravitational lenses: observations. BURKE B.F.
1986LAstr.100....3V 4 0 Les mirages gravitationnels : un outil de choix pour sonder l'univers. VANDERRIEST C.
1986MNRAS.222..787M 231 29 A search for QSOs in the fields of nearby galaxies - II. NGC 55, 253, 300 and 5364. MONK A.S., PENSTON M.V., PETTINI M., et al.
1986NIA86......523U 14 ~ Observations of active galactic nuclei with IUE and comparison with X-ray data. ULRICH M.H.
1986NIA86......715G 70 T                   3 2 ~ Ultraviolet light curve of the double quasar
Q 0957+561,
B and a determination of the Hubble constant.
1986Rech...17.1576K 3 0 Une lentille gravitationnelle invisible. KUNTH D.
1986S&W....25..252K 4 0 Mikro-gravitationslinsen und ihre Bedeutung fur die Astrophysik. KAYSER R.
1985AJ.....90...30R 87 51 Alignment of radio and optical polarization with VLBI structure. RUSK R. and SEAQUIST E.R.
1985ApJ...289...37S 1 5 24 Minilensing of multiply imaged quasars: flux variations and vanishing of images. SUBRAMANIAN K., CHITRE S.M. and NARASIMHA D.
1985ApJ...289L...1F 94 T                   1 2 194 On model-dependent bounds on H 0 from gravitational images: application to Q
0957+561 A, B.
1985ApJ...293..356R 70 T                   10 28 The multiple images of the quasar
1985ApJ...293..370G 71 T                   11 57 The gravitationally lensed quasar
0957+561: VLA observations and mass models.
1985ApJ...298..732C 10 22 Two-point correlation function of QSO metal absorption systems from an inhomogeneous catalog of observations. CROTTS A.P.S.
1985MNRAS.215..639Z 1 2 9 The gravitational lens effect and the surface density of quasars nearforeground galaxies. ZUIDERWIJK E.J.
1985Natur.314..402G 2 1 Direct estimate of Hubble's constant from the double quasar. GASKELL C.M.
1984A&A...130..157C 10 1 42 Maximum flux amplification by star disturbances in gravitational lens galaxies. CHANG K.
1984A&A...132..168C 44 1 176 Star disturbances in gravitational lens galaxies. CHANG K. and REFSDAL S.
1984A&A...133..374B 63 39 The evolution and origin of the sharp metal-rich absorption lines in QSO spectra. BERGERON J. and BOISSE P.
1984A&A...136L...9S 1 14 79 The clustering of quasars. SHAVER P.A.
1984A&A...138L..19F 74 T                   2 2 32 Determination of difference in light travel time for
QSO 0957+561 A, B.
1984A&A...139..289C 3 5 3C 273 : a gravitationally lensed quasar ? CHITRE S.M., NARASIMHA D., NARLIKAR J.V., et al.
1984A&A...141..318B 75 T                   1 2 43 The Hubble parameter: an upper limit from
QSO 0957+561A, B.
1984AJ.....89..979B 95 97 Sidedness, field configuration, and collimation of extragalactic radio jets. BRIDLE A.H.
1984ARA&A..22..319B 191 673 Extragalactic radio jets. BRIDLE A.H. and PERLEY R.A.
1984Afz....20..351K 70 T                   2 2 2 Binary quasi-stellar object
Q 0957+561
A, B a close pair of galaxies.
1984ApJ...276..440S 1 4 17 The quasar Q 2345+007A, B : a case for the double gravitational lens ? SUBRAMANIAN K. and CHITRE S.M.
1984ApJ...277...43S 11 28 1E 0104.2+3153 : a broad absorption-line QSO viewed through a giant elliptical galaxy. STOCKE J.T., LIEBERT J., SCHILD R., et al.
1984ApJ...277..481S 74 T                   1 1 16 CCD brightness monitoring of the Twin
QSO 0957+561.
1984ApJ...279...19W 125 72 The rotation measure distribution of QSOs and of intervening clouds: magnetic fields and column densities. WELTER G.L., PERRY J.J. and KRONBERG P.P.
1984ApJ...287..538G 71 T                   6 32 The milli-arcsecond images of Q
1984BAAS...16..519H 70 T                   2 1 Radio flux monitoring of 0957+561
A and B.
1984ComAp..10...47G 5 16 When clusters are superclusters ? GELLER M.J.
1984ComAp..10...75B 2 1 10 Gravitational lenses : observational status. BURKE B.F.
1984IAUC.3945....0F 70 T                   1 1 ~
QSO 0957+561.
1984MNRAS.210...79N 73 T                   2 2 31 Gravitational lens model of the double
QSO 0957+561
A, B incorporating VLBI features.
1984Natur.310..112N 3 5 62 Multiple imaging of quasars by galaxies and clusters. NARAYAN R., BLANDFORD R. and NITYANANDA R.
1984Sci...223.1255T 2 2 Quasars and gravitational lenses. TURNER E.L.
1983A&A...128..156K 9 1 38 The difference in light travel time between gravitational lens images. I. Generalization of the wavefront method to arbitrary deflectors and inhomogeneous universes. KAYSER R. and REFSDAL S.
1983ApJ...268L..57S 3 5 71 Common absorption systems in the spectra of the QSO pair Q 0307-195 A, B. SHAVER P.A. and ROBERTSON J.G.
1983BAAS...15..936C 2 0 0957+561 A, B: understanding the gravitational lens through the millisecond structure of the images. COHEN N.L., GORENSTEIN M.V., SHAPIRO I.I., et al.
1983BAAS...15..936Z 69 T                   1 0 An edge-on disk model for the double
QSO 0957+61.
1983MNRAS.203..861C 66 11 Optical positions of quasars. CLEMENTS E.D.
1983MmSAI..54..665S 6 4 Absorption-line studies of QSO pairs. SHAVER P.A. and ROBERTSON J.G.
1983Msngr..31...28S 4 0 Absorption-line spectroscopy of close pairs of QSOs. SHAVER P.A. and ROBERTSON J.G.
1983PAZh....9..524M 1 0 Image interferometry and gravitational lens parameters. MANDZHOS A.V.
1983S&T....66..390G 1 3 Charting paths through gravity's lens. GORENSTEIN M.V.
1983Sci...219...54G 7 1 30 Detection of compact radio source near the center of gravitational lens : quasar image or galactic core ? GORENSTEIN M.V., SHAPIRO I.I., COHEN N.L., et al.
1982ApJ...255...20K 73 T                   1 1 22 The nature of the light variations in the double QSO
1982Natur.296..415G 69 T                   3 5 IUE observations of variability and differences in the UV spectra of double quasar
0957+561 a, b.
1981ApJ...243L..57H 69 T                   2 6 VLBI obvservations of the
double quasar 0957+561.
1981ApJ...244..736Y 74 T                   1 6 158
Q0957+561 : detailed models of the gravitational lens effect.
1981ApJ...244..756Y 14 2 144 Q0957+561: effects of random stars on the gravitational lens. YOUNG P.
1981ApJ...249..415Y 4 2 48 The origin of a new absorption system discovered in both components of the double QSO Q0957+561. YOUNG P., SARGENT W.L.W., BOKSENBERG A., et al.
1981LicOB.824....1M 69 T                   3 0 Variability of the double quasar
0957+561A, B.
1981MitAG..52..132S 1 0 Die Demonstration des Gravitationslinseneffekts mit Hilfe optischer Linsen. SCHROEDER R.
1981Natur.289..758P 76 T                   1 1 39 VLBI structures of the images of the double
QSO 0957+561.
1980AJ.....85.1555W 36 34 Optical polarimetry of quasi-stellar and BL Lac objects. WILLS D., WILLS B.J., BREGER M., et al.
1980ApJ...237..319W 1 11 68 Observations of Fe II ultraviolet lines in QSOs. WILLS B.J., NETZER H., UOMOTO A.K., et al.
1980ApJ...238....1W 3 2 34 Spectrophotometry of the double QSO 0957+561. WILLS B.J. and WILLS D.
1980ApJ...241..507Y 75 T                   1 7 227 The double quasar Q0957+561 A, B: a gravitational lens image formed by a galaxy at z=0.39. YOUNG P., GUNN J.E., KRISTIAN J., et al.
1980IUE2n......295G 69 T                   3 ~ IUE observations of the twin
QSOs 0957+561 A, B.
1980Natur.285..461G 69 T                   3 12 UV spectra of the twin
QSOs 0957+561 A, B.
1980Sci...208..495G 71 T                   2 25 The double quasar 0957+561 - Examination of the gravitational lens hypothesis using the very large array. GREENFIELD P.E., ROBERT D.H. and BURKE B.F.
1980XXHI.........0. 12 ~ ???
1979ApJ...233L..43W 75 T                   2 65 Multiple-mirror telescope observations of the twin QSOs 0957+561A, B. WEYMANN R.J., CHAFFEE F.H., DAVIS M., et al.
1979Natur.279..381W 141 T                   2 726 0957+561 A, B: twin quasistellar objects or gravitational lens? WALSH D., CARSWELL R.F. and WEYMANN R.J.
1979Natur.282..271H 7 24 A compact group of QSOs with two appearing physically associated. HAZARD C., ARP H.C. and MORTON D.C.
1979Natur.282..561C 34 2 343 Flux variations of QSO 0957+561 A, B and image splitting by stars near the light path. CHANG K. and REFSDAL S.

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