[WSB2002] 0435-1223 D , the SIMBAD biblio

[WSB2002] 0435-1223 D , the SIMBAD biblio (40 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.23CEST17:54:25


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Title First 3 Authors
2002A&A...395...17W 2 10 70 HE 0435-1223: A wide separation quadruple QSO and gravitational lens. WISOTZKI L., SCHECHTER P.L., BRADT H.V., et al.
2003A&A...408..455W 1 10 54 Integral-field spectrophotometry of the quadruple QSO HE 0435-1223: Evidence for microlensing. WISOTZKI L., BECKER T., CHRISTENSEN L., et al.
2005AJ....129.2531M 31 35 The lens redshift and galaxy environment for HE 0435-1223. MORGAN N.D., KOCHANEK C.S., PEVUNOVA O., et al.
2006A&A...451..759E 45 58 COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses. III. Redshift of the lensing galaxy in eight gravitationally lensed quasars. EIGENBROD A., COURBIN F., MEYLAN G., et al.
2006ApJ...640...47K 2 26 144 The time delays of gravitational lens HE 0435-1223: an early-type galaxy with a rising rotation curve. KOCHANEK C.S., MORGAN N.D., FALCO E.E., et al.
2006ApJ...642...22Y 30 33 Halo structures of gravitational lens galaxies. YOO J., KOCHANEK C.S., FALCO E.E., 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.
2008A&A...485..403O 354       D     X         10 67 13 Extinction properties of lensing galaxies. OESTMAN L., GOOBAR A. and MOERTSELL E.
2009RMxAC..35..195F 39 0 Cosmology with gravitational lenses. FALCO E.E.
2009ApJ...706.1451M 91       D         F     2 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 931       D     X   F     24 105 10 Identifying anomalies in gravitational lens time delays. CONGDON A.B., KEETON C.R. and NORDGREN C.E.
2011AJ....141..101F 15       D               1 32 21 Near-infrared K and l' flux ratios in six lensed quasars. FADELY R. and KEETON C.R.
2011ApJ...729...34B 1 55 170 Sizes and temperature profiles of quasar accretion disks from chromatic microlensing. BLACKBURNE J.A., POOLEY D., RAPPAPORT S., et al.
2011A&A...528A..42R viz 154             C F     2 18 13 Flux and color variations of the quadruply imaged quasar He 0435-1223. RICCI D., POELS J., ELYIV A., et al.
2011A&A...536A..53C viz 81               F     1 9 89 COSMOGRAIL: the COSmological MOnitoring of GRAvItational lenses. IX. Time delays, lens dynamics and baryonic fraction in He 0435-1223. COURBIN F., CHANTRY V., REVAZ Y., et al.
2012MNRAS.419..936F 481       D     X C F     11 13 47 Substructure in the lens He 0435-1223. FADELY R. and KEETON C.R.
2012A&A...544A..62S viz 16       D               1 47 107 Microlensing of the broad line region in 17 lensed quasars. SLUSE D., HUTSEMEKERS D., COURBIN F., et al.
2013ApJ...764..160G 16       D               4 53 44 Microlensing of quasar broad emission lines: constraints on broad line region size. GUERRAS E., MEDIAVILLA E., JIMENEZ-VICENTE J., et al.
2013ApJ...778..123G 41 9 Microlensing of quasar ultraviolet iron emission. GUERRAS E., MEDIAVILLA E., JIMENEZ-VICENTE J., et al.
2014MNRAS.438.1435C 881       D     X   F     22 11 17 Spatially resolved velocity maps of halo gas around two intermediate-redshift galaxies. CHEN H.-W., GAUTHIER J.-R., SHARON K., 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.
2015ApJ...806..251J 16       D               1 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.
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.
2015MNRAS.454..287J 135       D     X   F     3 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.
2016MNRAS.458.2423Z 98       D       C       2 18 48 Probing the cool interstellar and circumgalactic gas of three massive lensing galaxies at z = 0.4-0.7. ZAHEDY F.S., CHEN H.-W., RAUCH M., et al.
2016MNRAS.461.3714T 217       D     X   F     5 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.
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...835..132M 789       D     X         20 13 18 Probing the broad-line region and the accretion disk in the lensed quasars HE 0435-1223, WFI 2033-4723, and HE 2149-2745 using gravitational microlensing. MOTTA V., MEDIAVILLA E., ROJAS K., et al.
2017MNRAS.465.4895W 92               F     1 13 147 H0LiCOW - IV. Lens mass model of HE 0435-1223 and blind measurement of its time-delay distance for cosmology. WONG K.C., SUYU S.H., AUGER M.W., et al.
2017MNRAS.465.4914B viz 122               F     1 9 376 H0LiCOW - V. New COSMOGRAIL time delays of HE 0435-1223: H0 to 3.8 per cent precision from strong lensing in a flat ΛCDM model. BONVIN V., COURBIN F., SUYU S.H., et al.
2017MNRAS.471.2224N 88               F     1 10 78 Probing dark matter substructure in the gravitational lens HE 0435-1223 with the WFC3 grism. NIERENBERG A.M., TREU T., BRAMMER G., 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.
2018ApJ...869..132F 576     A D     X         15 6 3 Estimate of the accretion disk size in the gravitationally lensed quasar HE 0435-1223 Using microlensing magnification statistics. FIAN C., MEDIAVILLA E., JIMENEZ-VICENTE J., et al.
2019ApJ...879...35D 29 ~ Constraining quasar relativistic reflection regions and spins with microlensing. DAI X., STEELE S., GUERRAS E., et al.
2020MNRAS.491.6077G 21       D               1 35 163 Warm dark matter chills out: constraints on the halo mass function and the free-streaming length of dark matter with eight quadruple-image strong gravitational lenses. GILMAN D., BIRRER S., NIERENBERG 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.
2021A&A...653A.109F 714       D     X C       16 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.
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.
2023RAA....23c5001Z 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.
2023A&A...673A..88A viz 19       D               1 22 ~ Probing compact dark matter objects with microlensing in gravitationally lensed quasars. AWAD P., CHAN J.H.H., MILLON M., et al.

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