QSO B1422+2309 , the SIMBAD biblio

QSO B1422+2309 , the SIMBAD biblio (423 results) C.D.S. - SIMBAD4 rel 1.7 - 2021.04.17CEST17:16:21


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Title First 3 Authors
2020A&A...640A.105M viz 19       D               1 44 ~ COSMOGRAIL. XIX. Time delays in 18 strongly lensed quasars from 15 years of optical monitoring. MILLON M., COURBIN F., BONVIN V., et al.
2020ApJ...894..153D 1586     A D S   X C       33 13 ~ X-ray monitoring of gravitationally lensed radio-loud quasars with Chandra. DOGRUEL M.B., DAI X., GUERRAS E., et al.
2020ApJ...903..128K 19       D               1 41 ~ Search for high-redshift blazars with Fermi/LAT. KRETER M., GOKUS A., KRAUSS F., et al.
2020MNRAS.491...92L 252       D     X C       5 128 ~ Investigation on young radio AGNs based on SDSS spectroscopy. LIAO M. and GU M.
2020MNRAS.491.2057L 19       D               2 28 ~ MUSE Analysis of Gas around Galaxies (MAGG) - I: Survey design and the environment of a near pristine gas cloud at z ≃ 3.5. LOFTHOUSE E.K., FUMAGALLI M., FOSSATI M., et al.
2020MNRAS.491.6077G 299       D     X C       6 29 ~ 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.
2020MNRAS.492.3047H 345       D     X C       7 45 ~ SHARP - VII. New constraints on the dark matter free-streaming properties and substructure abundance from gravitationally lensed quasars. HSUEH J.-W., ENZI W., VEGETTI S., et al.
2020MNRAS.492.5314N 47           X         1 11 ~ Double dark matter vision: twice the number of compact-source lenses with narrow-line lensing and the WFC3 grism. NIERENBERG A.M., GILMAN D., TREU T., et al.
2020MNRAS.496.1013M 205       D     X         5 8 ~ MUSEQuBES: Calibrating the redshifts of Ly α emitters using stacked circumgalactic medium absorption profiles. MUZAHID S., SCHAYE J., MARINO R.A., et al.
2020MNRAS.497..482L 65       D     X         2 91 ~ The X-ray emission in young radio active galactic nuclei. LIAO M., GU M., ZHOU M., et al.
2019A&A...630A.131M 18       D               1 37 ~ Relations between phenomenological and physical parameters in the hot coronae of AGNs computed with the MoCA code. MIDDEI R., BIANCHI S., MARINUCCI A., et al.
2019AN....340..437A viz 18       D               1 2121 ~ Optical variability of blazars. ABRAHAMYAN H.V., MICKAELIAN A.M., PARONYAN G.M., et al.
2019ApJ...870..125K 45           X         1 17 ~ The effect of microlensing on the observed X-ray energy spectra of gravitationally lensed quasars. KRAWCZYNSKI H., CHARTAS G. and KISLAT F.
2019ApJ...871..258S viz 18       D               1 478 ~ The Extremely Luminous Quasar Survey in the Sloan Digital Sky Survey footprint. III. The South Galactic Cap sample and the quasar luminosity function at cosmic noon. SCHINDLER J.-T., FAN X., McGREER I.D., et al.
2019ApJ...875L..20L 941     A D     X C       21 5 ~ NuSTAR measurement of coronal temperature in two luminous, high-redshift quasars. LANZUISI G., GILLI R., CAPPI M., et al.
2019ApJ...887..268C 45           X         1 3 ~ Finding the brightest cosmic beacons in the southern hemisphere. CALDERONE G., BOUTSIA K., CRISTIANI 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.
2018A&A...618A..56D viz 26     A               1 20 ~ Gaia GraL: Gaia DR2 gravitational lens systems. II. The known multiply imaged quasars. DUCOURANT C., WERTZ O., KRONE-MARTINS A., et al.
2018ApJ...852...22W viz 17       D               1 73 7 A new precision measurement of the small-scale line-of-sight power spectrum of the Lyα forest. WALTHER M., HENNAWI J.F., HISS H., et al.
2018ApJ...863..144S viz 17       D               1 271 3 The Extremely Luminous Quasar Survey in the Sloan Digital Sky Survey footprint. II. The North Galactic Cap sample. SCHINDLER J.-T., FAN X., McGREER I.D., et al.
2018ApJ...865...42H 17       D               1 73 11 A new measurement of the temperature-density relation of the IGM from Voigt profile fitting. HISS H., WALTHER M., HENNAWI J.F., et al.
2018ApJ...867...69L 174           X         4 3 ~ Anomalies in time delays of lensed gravitational waves and dark matter substructures. LIAO K., DING X., BIESIADA M., et al.
2018MNRAS.473.4722O 1071 T K A     X C       23 7 1 The intrinsic far-UV spectrum of the high-redshift quasar
B1422+231.
O'DOWD M., BATE N.F., WEBSTER R.L., et al.
2018MNRAS.475.2438H 584       D     X   F     13 8 8 Flux-ratio anomalies from discs and other baryonic structures in the Illustris simulation. HSUEH J.-W., DESPALI G., VEGETTI S., et al.
2018MNRAS.476.5075S 192       D     X C       4 103 6 Gravitational lensing reveals extreme dust-obscured star formation in quasar host galaxies. STACEY H.R., McKEAN J.P., ROBERTSON N.C., et al.
2018MNRAS.479.4796B 1306   K A D S   X C F     28 32 2 HST imaging of four gravitationally lensed quasars. BATE N.F., VERNARDOS G., O'DOWD M.J., et al.
2017A&A...604A..46B 298           X         7 7 ~ Analysis of luminosity distributions of strong lensing galaxies: subtraction of diffuse lensed signal. BIERNAUX J., MAGAIN P. and HAURET C.
2017AJ....154..114O viz 17       D               11 298 12 The second data release of the KODIAQ survey. O'MEARA J.M., LEHNER N., HOWK J.C., et al.
2017ApJ...841..113M viz 17       D               1 2943 1 An investigation of blazars without redshifts: not a missing population at high redshift. MAO P. and URRY C.M.
2017ApJ...850...94W viz 17       D               1 27 7 A spectroscopic survey of the fields of 28 strong gravitational lenses: implications for H0. WILSON M.L., ZABLUDOFF A.I., KEETON C.R., et al.
2017ApJ...851...13S 128       S   X         2 6 3 The Extremely Luminous Quasar Survey in the SDSS footprint. I. Infrared-based candidate selection. SCHINDLER J.-T., FAN X., McGREER I.D., et al.
2017MNRAS.467.3970G 298           X C F     5 34 18 Strong lensing signatures of luminous structure and substructure in early-type galaxies. GILMAN D., AGNELLO A., TREU T., et al.
2017MNRAS.467.4565L viz 17       D               1 1193 4 Bimodal radio variability in OVRO-40 m-monitored blazars. LIODAKIS I., PAVLIDOU V., HOVATTA T., et al.
2017MNRAS.471.2174B 17       D               1 32 8 The VLT LBG redshift survey - VI. Mapping H I in the proximity of z ∼ 3 LBGs with X-Shooter. BIELBY R.M., SHANKS T., CRIGHTON N.H.M., et al.
2017MNRAS.471.2224N 87           X         2 10 20 Probing dark matter substructure in the gravitational lens HE 0435-1223 with the WFC3 grism. NIERENBERG A.M., TREU T., BRAMMER G., 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.
2016A&A...585A..84B viz 435       D     X C       10 7 2 Analysis of luminosity distributions and the shape parameters of strong gravitational lensing elliptical galaxies. BIERNAUX J., MAGAIN P., SLUSE D., et al.
2016A&A...590A..34W 360     A     X C       8 7 10 Model-independent characterisation of strong gravitational lenses. WAGNER J. and BARTELMANN M.
2016A&A...592A.104D 1279 T K A     X C       29 11 1 XMM-Newton reveals a Seyfert-like X-ray spectrum in the z = 3.6
QSO
B1422+231
.
DADINA M., VIGNALI C., CAPPI M., et al.
2016ARA&A..54..313M 169           X C       3 25 64 The evolution of the intergalactic medium. McQUINN M.
2016ApJ...821..111K 42           X         1 5 2 On the problem of deformed spherical systems in modified newtonian dynamics. KO C.-M.
2016ApJ...831...39B 44           X         1 25 64 Ubiquitous giant Lyα nebulae around the brightest quasars at z ∼ 3.5 revealed with MUSE. BORISOVA E., CANTALUPO S., LILLY S.J., et al.
2016ApJ...833..194W viz 25     A               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.
2016ApJS..224...26M viz 17       D               1 2216 14 A comprehensive statistical description of radio-through-gamma-ray spectral energy distributions of all known blazars. MAO P., URRY C.M., MASSARO F., et al.
2016AstL...42..277K viz 17       D               1 965 1 Catalog of quasar candidates at 3<z<5.5 selected from the 3XMM-DR4 X-ray source catalog. KHORUNZHEV G.A., BURENIN R.A., MESCHERYAKOV A.V., 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.461..164I 142       D     X         4 15 8 On the origin of the flux ratio anomaly in quadruple lens systems. INOUE K.T.
2016MNRAS.461.4466C 42           X         1 14 2 Magnification relations of quad lenses and applications on Einstein crosses. CHU Z., LI G.L., LIN W.P., et al.
2016MNRAS.462.2440T 60       D     X         2 8 14 Observations of metals in the z ~= 3.5 intergalactic medium and comparison to the EAGLE simulations. TURNER M.L., SCHAYE J., CRAIN R.A., et al.
2016MNRAS.463.2690D 174           X         4 2 14 Metals in the z ∼ 3 intergalactic medium: results from an ultra-high signal-to-noise ratio UVES quasar spectrum. D'ODORICO V., CRISTIANI S., POMANTE E., et al.
2015A&A...580A..38R 58       D     X         2 50 19 H0 from ten well-measured time delay lenses. RATHNA KUMAR S., STALIN C.S. and PRABHU T.P.
2015Ap&SS.357...75M viz 16       D               1 3562 75 The 5th edition of the Roma-BZCAT. A short presentation. MASSARO E., MASELLI A., LETO C., 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...805...90T viz 41           X         1 146 71 The most luminous galaxies discovered by WISE. TSAI C.-W., EISENHARDT P.R.M., WU J., 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.
2015ApJS..218....7B 43           X         1 11 23 Properties of QSo metal-line absorption systems at high redshifts: nature and evolution of the absorbers and new evidence on escape of ionizing radiation from galaxies. BOKSENBERG A. and SARGENT W.L.W.
2015ApJS..219...29M viz 593       D     X C       14 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.447.3189X 209     A D S       F     8 16 49 How well can cold dark matter substructures account for the observed radio flux-ratio anomalies. XU D., SLUSE D., GAO L., et al.
2015MNRAS.448.2704I 389       D S   X C       8 8 18 Constraints on warm dark matter from weak lensing in anomalous quadruple lenses. INOUE K.T., TAKAHASHI R., TAKAHASHI T., et al.
2015MNRAS.450.2067T 65           X         1 1 24 Detection of hot, metal-enriched outflowing gas around z ∼ 2.3 star-forming galaxies in the Keck Baryonic Structure Survey. TURNER M.L., SCHAYE J., STEIDEL C.C., et al.
2015RAA....15.1945S 41           X         1 108 31 Thirty Meter Telescope Detailed Science Case: 2015. SKIDMORE W.
2014ARep...58..725A 5 2 Spectral distribution of the polarized radiation from standard accretion disks in Active Galactic Nuclei: Observational analysis. AFANAS'EV V.L., BORISOV N.V., GNEDIN Yu.N., et al.
2014ApJ...793...96S 343       D     X C       8 20 40 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.437..600S 41           X         1 40 30 Hubble constant and dark energy inferred from free-form determined time delay distances. SERENO M. and PARAFICZ D.
2014MNRAS.438.3058R viz 16       D               1 1414 25 Connecting radio variability to the characteristics of gamma-ray blazars. RICHARDS J.L., HOVATTA T., MAX-MOERBECK W., et al.
2014MNRAS.439..690H viz 16       D               2 1318 31 Connection between optical and γ-ray variability in blazars. HOVATTA T., PAVLIDOU V., KING O.G., et al.
2014MNRAS.439.2494O 16       D               1 162 55 The stellar and dark matter distributions in elliptical galaxies from the ensemble of strong gravitational lenses. OGURI M., RUSU C.E. and FALCO E.E.
2014MNRAS.440..870T 625       D     X C       15 41 11 Weak lensing by intergalactic ministructures in quadruple lens systems: simulation and detection. TAKAHASHI R. and INOUE K.T.
2014MNRAS.441..127G 97       D         F     3 18 4 Measuring gravitational lens time delays using low-resolution radio monitoring observations. GURKAN G., JACKSON N., KOOPMANS L.V.E., et al.
2014MNRAS.442.2094T 57       D     X         2 18 12 The Very Large Telescope Lyman-Break Galaxy Redshift Survey - IV. Gas and galaxies at z ∼ 3 in observations and simulations. TUMMUANGPAK P., BIELBY R.M., SHANKS T., et al.
2014MNRAS.442.2434N 478 T K A     X         11 7 54 Detection of substructure with adaptive optics integral field spectroscopy of the gravitational lens
B1422+231.
NIERENBERG A.M., TREU T., WRIGHT S.A., et al.
2013A&A...553A..53S viz 40           X         1 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.
2013ApJ...764....9M viz 377       D     X         10 231 12 Mg II absorption at 2 < z < 6 with Magellan/FIRE. II. A longitudinal study of H I, metals, and ionization in galactic halos. MATEJEK M.S., SIMCOE R.A., COOKSEY K.L., et al.
2013MNRAS.436.2120N 80             C       1 17 5 Do gravitational lens galaxies have an excess of luminous substructure ? NIERENBERG A.M., OLDENBURG D. and TREU T.
2013RAA....13..803H 40           X         1 13 2 Gravitationally lensed extended sources : the case of QSO RX J0911. HOAI D.T., NHUNG P.T., ANH P.T., et al.
2012A&A...538A..43C 16       D               1 36 19 Constraints on cosmological models from lens redshift data. CAO S. and ZHU Z.-H.
2012A&A...538A..99S 953     A D     X C       24 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...544A..25M viz 95       D   O   C       3 134 15 Multifrequency study of GHz-peaked spectrum sources and candidates with the RATAN-600 radio telescope. MINGALIEV M.G., SOTNIKOVA Yu.V., TORNIAINEN I., et al.
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..111P 215       D     X         6 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.
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...754...88H 977 T K A     X C       23 12 0 Type Ia supernova remnant shell at z = 3.5 seen in the three sightlines toward the gravitationally lensed
QSO
B1422+231
.
HAMANO S., KOBAYASHI N., KONDO S., et al.
2012ApJ...755...31C viz 16       D               2 311 26 Testing the dark energy with gravitational lensing statistics. CAO S., COVONE G. and ZHU Z.-H.
2012ApJ...761..112M viz 95       D       C       3 47 35 A survey of Mg II absorption at 2 < z < 6 with Magellan/FIRE. I. Sample and evolution of the Mg II frequency. MATEJEK M.S. and SIMCOE R.A.
2012MNRAS.420.1053B 41           X         1 7 27 The filling factor of intergalactic metals at redshift z= 3. BOOTH C.M., SCHAYE J., DELGADO J.D., et al.
2012MNRAS.420.2944W 95       D         F     2 41 5 The fundamental surface of quad lenses. WOLDESENBET A.G. and WILLIAMS L.L.R.
2012MNRAS.421.2553X 241           X C       5 6 43 On the effects of line-of-sight structures on lensing flux-ratio anomalies in a ΛCDM universe. XU D.D., MAO S., COOPER A.P., et al.
2012MNRAS.426.2978I 175       D S   X         4 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.
2011A&A...536A..44E 315     A D     X C F     7 22 22 Time delays for eleven gravitationally lensed quasars revisited. EULAERS E. and MAGAIN P.
2011A&A...536A.105V 308       S   X C       4 3 435 X-shooter, the new wide band intermediate resolution spectrograph at the ESO Very Large Telescope. VERNET J., DEKKER H., D'ODORICO S., et al.
2011AJ....141..101F 39           X         1 32 21 Near-infrared K and l' flux ratios in six lensed quasars. FADELY R. and KEETON C.R.
2011ApJ...726...84W 866     A D     X C       22 14 52 The effect of environment on shear in strong gravitational lenses. WONG K.C., KEETON C.R., WILLIAMS K.A., et al.
2011ApJ...728...23W viz 16       D               2 181 62 GALEX far-ultraviolet color selection of UV-bright high-redshift quasars. WORSECK G. and PROCHASKA J.X.
2011ApJ...738...96M 16       D               1 90 67 The microlensing properties of a sample of 87 lensed quasars. MOSQUERA A.M. and KOCHANEK C.S.
2011ApJ...739L..28J 39           X         1 15 8 The faintest radio source yet: expanded very large array observations of the gravitational lens SDSS J1004+4112. JACKSON N.
2011ApJ...740...97L 291       D     X C       7 27 23 Resolving the baryon-fraction profile in lensing galaxies. LEIER D., FERRERAS I., SAHA P., et al.
2011ApJ...741..117C 79             C       1 18 23 The effects of halo-to-halo variation on substructure lensing. CHEN J., KOUSHIAPPAS S.M. and ZENTNER A.R.
2011ApJ...742...93A 372       D     X         10 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..194...29R viz 16       D               1 1164 227 Blazars in the Fermi era: the OVRO 40 m telescope monitoring program. RICHARDS J.L., MAX-MOERBECK W., PAVLIDOU V., et al.
2011MNRAS.410.1096B 17       D               1 61 177 Detection of extended He II reionization in the temperature evolution of the intergalactic medium. BECKER G.D., BOLTON J.S., HAEHNELT M.G., et al.
2011MNRAS.411..826T 94       D     X         3 33 38 Cosmic evolution of the C IV in high-resolution hydrodynamic simulations. TESCARI E., VIEL M., D'ODORICO V., et al.
2011MNRAS.414..241B 199           X C F     3 3 17 The impact of spatial fluctuations in the ultraviolet background on intergalactic carbon and silicon. BOLTON J.S. and VIEL M.
2011NewAR..55...91V 39           X         1 216 40 Magnetic fields in the galactic Universe, as observed in supershells, galaxies, intergalactic and cosmic realms. VALLEE J.P.
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 16       D               2 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.
2010A&A...522A..95C 273           X         7 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.
2010ApJ...709..552C 780     A D     X   F     20 105 10 Identifying anomalies in gravitational lens time delays. CONGDON A.B., KEETON C.R. and NORDGREN C.E.
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...712.1378P 173       D     X   F     4 20 42 The Hubble constant inferred from 18 time-delay lenses. PARAFICZ D. and HJORTH J.
2010JApA...31...59A 20 1 Determination of the mean HI absorption of the intergalactic medium. AGHAEE A., PETITJEAN P., SRIANAND R., et al.
2010MNRAS.401.2715D viz 289       D     X C F     6 33 46 The rise of the C IV mass density at z < 2.5. D'ODORICO V., CALURA F., CRISTIANI S., et al.
2010MNRAS.402.2031C 55       D     X         2 33 31 Galaxy evolution from strong-lensing statistics: the differential evolution of the velocity dispersion function in concord with the Λ cold dark matter paradigm. CHAE K.-H.
2010MNRAS.403..826J 78             C       1 26 14 Satellites in the field and lens galaxies: SDSS/COSMOS versus SLACS/CLASS. JACKSON N., BRYAN S.E., MAO S., et al.
2010MNRAS.408.1721X 119           X         3 8 33 Substructure lensing: effects of galaxies, globular clusters and satellite streams. XU D.D., MAO S., COOPER A.P., et al.
2009A&A...495..691M viz 15       D               2 3203 187 Roma-BZCAT: a multifrequency catalogue of blazars. MASSARO E., GIOMMI P., LETO C., et al.
2009A&A...498...49C 54       D     X         2 12 10 Parity dependence in strong lens systems as a probe of dark matter substructure. CHEN J.
2009ApJ...692..694G 39           X         1 7 4 A quasi-stellar object plus host system lensed into a 6'' Einstein ring by a low-redshift galaxy. GHOSH K.K. and NARASIMHA D.
2009ApJ...697..610M 116           X C       2 16 29 Subaru mid-infrared imaging of the quadruple lenses. II. Unveiling lens structure of MG0414+0534 and Q2237+030. MINEZAKI T., CHIBA M., KASHIKAWA N., et al.
2009ApJ...699.1578M 39           X         1 29 30 Detection of a companion lens galaxy using the mid-infrared flux ratios of the gravitationally lensed quasar H1413+117. MacLEOD C.L., KOCHANEK C.S. and AGOL E.
2009MNRAS.398.1235X 249       D     X C       6 16 63 Effects of dark matter substructures on gravitational lensing: results from the Aquarius simulations. XU D.D., MAO S., WANG J., et al.
2009Msngr.138....4V 4 4 X-shooter starts operation at the Paranal Observatory: A new opportunity for extragalactic astronomy. VERNET J., D'ODORICO S., CHRISTENSEN L., et al.
2009RMxAC..35..195F 39           X         1 39 0 Cosmology with gravitational lenses. FALCO E.E.
2009RvMP...81.1405M 80           X         2 18 136 The physics of the intergalactic medium. MEIKSIN A.A.
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