[SSC2003] G , the SIMBAD biblio

[SSC2003] G , the SIMBAD biblio (37 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.23CEST19:19:09


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Title First 3 Authors
2003A&A...406L..43S 2 11 88 A quadruply imaged quasar with an optical Einstein ring candidate: 1RXS J113155.4-123155. SLUSE D., SURDEJ J., CLAESKENS J.-F., et al.
2006A&A...449..539S 15 17 Multi-wavelength study of the gravitational lens system RXS J113155.4-123155. I. Multi-epoch optical and near infrared imaging. SLUSE D., CLAESKENS J.-F., ALTIERI B., et al.
2006ApJ...640..569B 2 6 35 X-ray and optical flux anomalies in the quadruply lensed QSO 1RXS J1131-1231. BLACKBURNE J.A., POOLEY D. and RAPPAPORT S.
2006ApJ...646...85W 27 39 First results from a photometric survey of strong gravitational lens environments. WILLIAMS K.A., MOMCHEVA I., KEETON C.R., et al.
2007ApJ...660....1O 1 46 156 Gravitational lens time delays: a statistical assessment of lens model dependences and implications for the global Hubble constant. OGURI M.
2007A&A...468..885S 2 13 70 Multi-wavelength study of the gravitational lens system RXS J1131-1231. III. Long slit spectroscopy: micro-lensing probes the QSO structure. SLUSE D., CLAESKENS J.-F., HUTSEMEKERS D., et al.
2008MNRAS.390...39B 114           X   F     2 3 6 Unlensing HST observations of the Einstein ring 1RXS J1131-1231: a Bayesian analysis. BREWER B.J. and LEWIS G.F.
2008RMxAC..32...83S 6 4 Microlensing probes the AGN structure of the lensed quasar J1131-1231. SLUSE D., CLAESKENS J.-F., HUTSEMEKERS D., et al.
2009RMxAC..35..195F 39 0 Cosmology with gravitational lenses. FALCO E.E.
2010ApJ...709..278D 16                   Z 6 198 The sizes of the X-ray and optical emission regions of RXJ 1131-1231. DAI X., KOCHANEK C.S., CHARTAS G., et al.
2010A&A...522A..95C 15       D               1 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.
2012ApJ...755...31C viz 15       D               1 313 26 Testing the dark energy with gravitational lensing statistics. CAO S., COVONE G. and ZHU Z.-H.
2012ApJ...757..137C 42           X   F     8 51 Revealing the structure of an accretion disk through energy-dependent X-ray microlensing. CHARTAS G., KOCHANEK C.S., DAI X., et al.
2012MNRAS.426.2978I 77           X         2 31 21 Weak lensing by line-of-sight haloes as the origin of flux-ratio anomalies in quadruply lensed QSOs. INOUE K.T. and TAKAHASHI R.
2012Msngr.150...49T 6 6 COSMOGRAIL: Measuring time delays of gravitationally lensed quasars to constrain cosmology. TEWES M., COURBIN F., MEYLAN G., et al.
2013A&A...553A..53S viz 156           X C       3 13 12 Mid-infrared microlensing of accretion disc and dusty torus in quasars: effects on flux ratio anomalies. SLUSE D., KISHIMOTO M., ANGUITA T., et al.
2013A&A...556A..22T viz 84               F     3 11 135 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.
2013MNRAS.435.2092I                   Z 2 3 Direct gravitational imaging of intermediate mass black holes in extragalactic haloes. INOUE K.T., RASHKOV V., SILK J., et al.
2014MNRAS.437..600S 252       D     X         7 40 30 Hubble constant and dark energy inferred from free-form determined time delay distances. SERENO M. and PARAFICZ D.
2014MNRAS.440..870T 55       D     X         2 41 11 Weak lensing by intergalactic ministructures in quadruple lens systems: simulation and detection. TAKAHASHI R. and INOUE K.T.
2015ApJS..219...29M viz 16       D               1 10653 17 A spectroscopic survey of the fields of 28 strong gravitational lenses. MOMCHEVA I.G., WILLIAMS K.A., COOL R.J., et al.
2015MNRAS.452..115W 16       D               1 6 ~ Combining time delays and image positions for quadruple lenses: a moment approach. WITT H.J. and MAO S.
2016MNRAS.462.3457C 180       D       C F     7 6 21 SHARP - III. First use of adaptive-optics imaging to constrain cosmology with gravitational lens time delays. CHEN G.C.-F., SUYU S.H., WONG K.C., et al.
2016ApJ...833..194W viz 16       D               1 3427 8 A spectroscopic survey of the fields of 28 strong gravitational lenses: the group catalog. WILSON M.L., ZABLUDOFF A.I., AMMONS S.M., et al.
2018MNRAS.473..616T 41           X         1 6 ~ Quasar microlensing models with constraints on the Quasar light curves. TIE S.S. and KOCHANEK C.S.
2018ApJ...853L..27D 1 9 17 Probing planets in extragalactic galaxies using quasar microlensing. DAI X. and GUERRAS E.
2018A&A...613A..34P 99       D         F     2 12 4 ALMA view of RX J1131-1231: Sub-kpc CO (2-1) mapping of a molecular disk in a lensed star-forming quasar host galaxy. PARAFICZ D., RYBAK M., McKEAN J.P., et al.
2019MNRAS.486.5046W 17       D               1 3 ~ The Hubble-Lemaitre constant and sound horizon from low-redshift probes. WOJTAK R. and AGNELLO A.
2019Sci...365.1134J 13 ~ A measurement of the Hubble constant from angular diameter distances to two gravitational lenses. JEE I., SUYU S.H., KOMATSU E., et al.
2020ApJ...897..127W 60       D     X         2 14 ~ Cosmology-independent estimate of the Hubble constant and spatial curvature using time-delay lenses and quasars. WEI J.-J. and MELIA F.
2020A&A...643A.135C 85               F     6 ~ Gravitational Lensing and Dynamics (GLaD): combined analysis to unveil properties of high-redshift galaxies. CHIRIVI G., YILDIRIM A., SUYU S.H., et al.
2021A&A...647A.115C 348           X C       7 7 ~ Measuring accretion disk sizes of lensed quasars with microlensing time delay in multi-band light curves. CHAN J.H.H., ROJAS K., MILLON M., et al.
2022MNRAS.511.4417V 90               F     1 9 4 Simulating time-varying strong lenses. VERNARDOS G.
2023RAA....23c5001Z                   Z 25 ~ Forecast of Observing Time Delay of Strongly Lensed Quasars with the Muztagh-Ata 1.93 m Telescope. ZHU S., SHU Y., YUAN H., et al.
2023MNRAS.522.1863P 19       D               1 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.
2023A&A...673A...9S viz 94               F     1 7 13 TDCOSMO XII. Improved Hubble constant measurement from lensing time delays using spatially resolved stellar kinematics of the lens galaxy. SHAJIB A.J., MOZUMDAR P., CHEN G.C.-F., et al.
2023A&A...675A..21Y 93               F     1 6 ~ TDCOSMO XIII. Cosmological distance measurements in light of the mass-sheet degeneracy: Forecasts from strong lensing and integral field unit stellar kinematics. YILDIRIM A., SUYU S.H., CHEN G.C.-F., et al.

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