ClG J1311-0311 , the SIMBAD biblio

ClG J1311-0311 , the SIMBAD biblio (88 results) C.D.S. - SIMBAD4 rel 1.7 - 2020.08.03CEST20:09:37


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Title First 3 Authors
2020ApJ...892..100U 620       D S   X C       11 14 ~ Gas density perturbations in the cool cores of CLASH galaxy clusters. UEDA S., ICHINOHE Y., MOLNAR S.M., et al.
2020MNRAS.491.3751D 20       D               1 42 ~ The growth of brightest cluster galaxies and intracluster light over the past 10 billion years. DEMAIO T., GONZALEZ A.H., ZABLUDOFF A., et al.
2020MNRAS.491.5301S 20       D               1 25 ~ Weak lensing shear estimation beyond the shape-noise limit: a machine learning approach. SPRINGER O.M., OFEK E.O., WEISS Y., et al.
2019A&A...622A..78D 205       D     X   F     4 39 ~ Link between brightest cluster galaxy properties and large scale extensions of 38 DAFT/FADA and CLASH clusters in the redshift range 0.2 < z < 0.9. DURRET F., TARRICQ Y., MARQUEZ I., et al.
2019A&A...632A..36C viz 1045       D S   X C       21 14 ~ Strong lensing models of eight CLASH clusters from extensive spectroscopy: Accurate total mass reconstructions in the cores. CAMINHA G.B., ROSATI P., GRILLO C., et al.
2019MNRAS.485..586R 19       D               6 24 ~ Quantifying the suppression of the (un)-obscured star formation in galaxy cluster cores at 0.2<= z <=0.9. RODRIGUEZ-MUNOZ L., RODIGHIERO G., MANCINI C., et al.
2019MNRAS.487.3734L 112       D         F     3 18 ~ Testing Verlinde's gravity using gravitational lensing of clusters. LI X., TANG L. and LIN H.-N.
2019MNRAS.488.1704K 19       D               4 40 ~ Weak lensing measurements of the APEX-SZ galaxy cluster sample. KLEIN M., ISRAEL H., NAGARAJAN A., et al.
2019MNRAS.488.1728N 19       D               1 39 ~ Weak-lensing mass calibration of the Sunyaev-Zel'dovich effect using APEX-SZ galaxy clusters. NAGARAJAN A., PACAUD F., SOMMER M., et al.
2018ApJ...853..100Y 18       D               4 70 1 JVLA 1.5 GHz continuum observation of CLASH clusters. I. Radio properties of the BCGs. YU H., TOZZI P., VAN WEEREN R., et al.
2018ApJ...861...71S 511       D S   X C       10 14 2 Constraints on the mass, concentration, and nonthermal pressure support of six CLASH clusters from a joint analysis of X-ray, SZ, and Lensing data. SIEGEL S.R., SAYERS J., MAHDAVI A., et al.
2018MNRAS.474.3009D 18       D               6 30 7 Lost but not forgotten: intracluster light in galaxy groups and clusters. DEMAIO T., GONZALEZ A.H., ZABLUDOFF A., et al.
2018MNRAS.475.3823S 224   K       X   F     4 9 6 What if LIGO's gravitational wave detections are strongly lensed by massive galaxy clusters? SMITH G.P., JAUZAC M., VEITCH J., et al.
2018MNRAS.481..749S 197       D       C F     6 46 ~ Thermodynamic profiles of galaxy clusters from a joint X-ray/SZ analysis. SHITANISHI J.A., PIERPAOLI E., SAYERS J., et al.
2017A&A...604A..89P 44           X         1 24 16 Calibrating the Planck cluster mass scale with CLASH. PENNA-LIMA M., BARTLETT J.G., ROZO E., et al.
2017A&A...604A.100G 47 1 On the evolution of the entropy and pressure profiles in X-ray luminous galaxy clusters at z > 0.4. GHIRARDINI V., ETTORI S., AMODEO S., et al.
2017ApJ...834...53W 17       D               2 36 7 The evolution of star formation activity in cluster galaxies over 0.15 < z < 1.5. WAGNER C.R., COURTEAU S., BRODWIN M., et al.
2017ApJ...838...86R 453       D     X C       10 17 6 Galaxy cluster pressure profiles as determined by Sunyaev Zel'dovich effect observations with MUSTANG and Bolocam. II. Joint analysis of 14 clusters. ROMERO C.E., MASON B.S., SAYERS J., et al.
2017ApJ...848...37C viz 17       D               1 29 6 Crowded field galaxy photometry: precision colors in the CLASH clusters. CONNOR T., DONAHUE M., KELSON D.D., et al.
2017MNRAS.468.1917R viz 17       D               1 245 17 The cool-core state of Planck SZ-selected clusters versus X-ray-selected samples: evidence for cool-core bias. ROSSETTI M., GASTALDELLO F., ECKERT D., et al.
2017MNRAS.468.3322S viz 17       D               2 28273 12 CoMaLit - V. Mass forecasting with proxies: method and application to weak lensing calibrated samples. SERENO M. and ETTORI S.
2017MNRAS.470...95M viz 17       D               1 27 9 CLASH: accurate photometric redshifts with 14 HST bands in massive galaxy cluster cores. MOLINO A., BENITEZ N., ASCASO B., et al.
2016A&A...590A.126A 60       D     X         2 47 10 The relation between mass and concentration in X-ray galaxy clusters at high redshift. AMODEO S., ETTORI S., CAPASSO R., et al.
2016ApJ...817...85X viz 17       D               3 27 15 The detection and statistics of giant arcs behind CLASH clusters. XU B., POSTMAN M., MENEGHETTI M., et al.
2016ApJ...819...36D 230       D     X         6 25 18 The morphologies and alignments of gas, mass, and the central galaxies of CLASH clusters of galaxies. DONAHUE M., ETTORI S., RASIA E., et al.
2016ApJ...832...26S 17       D               1 48 13 A comparison and joint analysis of Sunyaev-Zel'dovich effect measurements from Planck and Bolocam for a set of 47 massive galaxy clusters. SAYERS J., GOLWALA S.R., MANTZ A.B., et al.
2016ApJS..224....1R viz 17       D               1 404425 87 The redMaPPer galaxy cluster catalog from DES science verification data. RYKOFF E.S., ROZO E., HOLLOWOOD D., et al.
2016ApJS..227...31S viz 17       D               1 137 13 A systematic search for X-ray cavities in galaxy clusters, groups, and elliptical galaxies. SHIN J., WOO J.-H. and MULCHAEY J.S.
2016MNRAS.455..892G viz 17       D               3 352 14 The galaxy cluster concentration-mass scaling relation. GROENER A.M., GOLDBERG D.M. and SERENO M.
2016MNRAS.455.2994M 17       D               1 56 21 Jellyfish: the origin and distribution of extreme ram-pressure stripping events in massive galaxy clusters. McPARTLAND C., EBELING H., ROEDIGER E., et al.
2016MNRAS.460.2862B viz 17       D               3 138 9 The evolution in the stellar mass of brightest cluster galaxies over the past 10 billion years. BELLSTEDT S., LIDMAN C., MUZZIN A., et al.
2016MNRAS.460.3432B 17       D               3 44 9 Galaxy cluster scaling relations measured with APEX-SZ. BENDER A.N., KENNEDY J., ADE P.A.R., et al.
2016MNRAS.461.4517D 187       D       C F     2 32 6 Morphological evolution of cluster red sequence galaxies in the past 9 Gyr. DE PROPRIS R., BREMER M.N. and PHILLIPPS S.
2015ApJ...801...12H 125           X C       2 79 5 CLASH: extreme emission-line galaxies and their implication on selection of high-redshift galaxies. HUANG X., ZHENG W., WANG J., et al.
2015ApJ...801...44Z viz 125       S   X         2 444 111 Hubble Space Telescope combined strong and weak lensing analysis of the CLASH sample: mass and magnification models and systematic uncertainties. ZITRIN A., FABRIS A., MERTEN J., et al.
2015ApJ...805..177D 226       D     X         6 49 41 Ultraviolet morphology and unobscured UV star formation rates of CLASH brightest cluster galaxies. DONAHUE M., CONNOR T., FOGARTY K., et al.
2015ApJ...806....4M 105       D         F     7 23 118 CLASH: the concentration-mass relation of galaxy clusters. MERTEN J., MENEGHETTI M., POSTMAN M., et al.
2015ApJ...806...18C 17       D               3 47 35 Galaxy cluster scaling relations between Bolocam Sunyaev-Zel'dovich effect and Chandra X-ray measurements. CZAKON N.G., SAYERS J., MANTZ A., et al.
2015ApJ...813..117F 21 19 Star formation activity in CLASH brightest cluster galaxies. FOGARTY K., POSTMAN M., CONNOR T., et al.
2015MNRAS.446.2709E viz 17       D               5 139 14 X-ray bright active galactic nuclei in massive galaxy clusters - III. New insights into the triggering mechanisms of cluster AGN. EHLERT S., ALLEN S.W., BRANDT W.N., et al.
2015MNRAS.447..479W 17       D               1 38 19 Cosmological tests using the angular size of galaxy clusters. WEI J.-J., WU X.-F. and MELIA F.
2015MNRAS.447.3723P 17       D               1 90 8 The Chandra Deep Group Survey - cool core evolution in groups and clusters of galaxies. PASCUT A. and PONMAN T.J.
2015MNRAS.449..199M viz 100       D       C       2 362 35 Cosmology and astrophysics from relaxed galaxy clusters - I. Sample selection. MANTZ A.B., ALLEN S.W., MORRIS R.G., et al.
2015MNRAS.449.2353B 18       D               3 26 39 Coevolution of brightest cluster galaxies and intracluster light using CLASH. BURKE C., HILTON M. and COLLINS C.
2015MNRAS.450.2261M viz 17       D               1 319 25 The galaxy cluster outskirts probed by Chandra. MORANDI A., SUN M., FORMAN W., et al.
2015MNRAS.450.3665S viz 17       D               1 430 25 CoMaLit - III. Literature catalogues of weak lensing clusters of galaxies (LC2). SERENO M.
2015MNRAS.453.1577R 42           X         1 16 2 Primordial alignment of elliptical galaxies in intermediate redshift clusters. RONG Y., ZHANG S.-N. and LIAO J.-Y.
2015MNRAS.454.4085B 18       D               2 19 23 Galaxy cluster lensing masses in modified lensing potentials. BARREIRA A., LI B., JENNINGS E., et al.
2014ARep...58..587B viz 16       D               1 137 24 Chandra X-ray galaxy clusters at z < 1.4: Constraints on the inner slope of the density profiles. BABYK Yu.V., DEL POPOLO A. and VAVILOVA I.B.
2014ApJ...794..136D 18       D               3 27 72 CLASH-x: a comparison of lensing and X-ray techniques for measuring the mass profiles of galaxy clusters. DONAHUE M., VOIT G.M., MAHDAVI A., et al.
2014ApJ...797...34M 19       D               1 19 75 The MUSIC of CLASH: predictions on the concentration-mass relation. MENEGHETTI M., RASIA E., VEGA J., et al.
2014MNRAS.440.2077M 43           X         1 47 101 Cosmology and astrophysics from relaxed galaxy clusters - II. Cosmological constraints. MANTZ A.B., ALLEN S.W., MORRIS R.G., et al.
2013A&A...555A..66L viz 16       D               1 122 37 A comprehensive picture of baryons in groups and clusters of galaxies. LAGANA T.F., MARTINET N., DURRET F., et al.
2013ApJ...764..152S 77 23 The contribution of radio galaxy contamination to measurements of the Sunyaev-Zel'dovich decrement in massive galaxy clusters at 140 GHz with bolocam. SAYERS J., MROCZKOWSKI T., CZAKON N.G., et al.
2013ApJ...768..177S 17       D               1 46 69 Sunyaev-zel'dovich-measured pressure profiles from the bolocam X-Ray/SZ galaxy cluster sample. SAYERS J., CZAKON N.G., MANTZ A., et al.
2013ApJ...769...52W viz 81             C       1 278 15 A new approach to identifying the most powerful gravitational lensing telescopes. WONG K.C., ZABLUDOFF A.I., AMMONS S.M., et al.
2012A&A...543A.104C 16       D               1 38 16 Galaxy cluster angular-size data constraints on dark energy. CHEN Y. and RATRA B.
2012A&A...546A...6A viz 16       D               1 130 18 The enrichment history of the intracluster medium: a Bayesian approach. ANDREON S.
2012ApJ...745...98M 16       D               1 51 43 Morphology of galaxy clusters: a cosmological model-independent test of the cosmic distance-duality relation. MENG X.-L., ZHANG T.-J., ZHAN H., et al.
2012ApJS..199...23H viz 16       D               1 460 44 Infrared and ultraviolet star formation in brightest cluster galaxies in the ACCEPT sample. HOFFER A.S., DONAHUE M., HICKS A., et al.
2012ApJS..199...25P viz 30       D               3 37 525 The Cluster Lensing And Supernova survey with Hubble: an overview. POSTMAN M., COE D., BENITEZ N., et al.
2012MNRAS.420.2120M 17       D               1 111 113 X-ray–optical classification of cluster mergers and the evolution of the cluster merger fraction. MANN A.W. and EBELING H.
2012MNRAS.421.1360H 42           X         1 34 71 Extreme AGN feedback in the MAssive Cluster Survey: a detailed study of X-ray cavities at z>0.3. HLAVACEK-LARRONDO J., FABIAN A.C., EDGE A.C., et al.
2012MNRAS.421.1583M 16       D               2 116 97 Self-similar scaling and evolution in the galaxy cluster X-ray luminosity-temperature relation. MAUGHAN B.J., GILES P.A., RANDALL S.W., et al.
2012MNRAS.425..477N viz 16       D               1 1751 27 γ-rays from annihilating dark matter in galaxy clusters: stacking versus single source analysis. NEZRI E., WHITE R., COMBET C., et al.
2012MNRAS.427.1953C 97       D S             3 32 63 The low-mass end of the fundamental relation for gravitationally lensed star-forming galaxies at 1 < z < 6. CHRISTENSEN L., RICHARD J., HJORTH J., et al.
2011A&A...529A..65Y 16       D               2 46 19 Measuring redshifts using X-ray spectroscopy of galaxy clusters: results from Chandra data and future prospects. YU H., TOZZI P., BORGANI S., et al.
2011A&A...533A...6B 95       D       C       7 8 10 The effect of helium sedimentation on galaxy cluster masses and scaling relations. BULBUL G.E., HASLER N., BONAMENTE M., et al.
2011A&A...534A.109P viz 16       D               1 1757 240 The MCXC: a meta-catalogue of X-ray detected clusters of galaxies. PIFFARETTI R., ARNAUD M., PRATT G.W., et al.
2011MNRAS.418.1089C 16       D               1 227 17 X-ray calibration of Sunyaev–Zel'dovich scaling relations with the ACCEPT catalogue of galaxy clusters observed by Chandra. COMIS B., DE PETRIS M., CONTE A., et al.
2010ApJ...721..653R 16       D               2 40 26 Impact of Chandra calibration uncertainties on galaxy cluster temperatures: application to the Hubble constant. REESE E.D., KAWAHARA H., KITAYAMA T., et al.
2010NewA...15..159B 16       D               2 38 2 Dark matter and modified Newtonian dynamics in a sample of high-redshift galaxy clusters observed with Chandra BLAKSLEY C. and BONAMENTE M.
2009A&A...501...61E 16       D               1 60 108 The cluster gas mass fraction as a cosmological probe: a revised study. ETTORI S., MORANDI A., TOZZI P., et al.
2009A&A...503...35E 16       D               3 44 6 The radial dependence of temperature and iron abundance. Galaxy clusters from z = 0.14 to z = 0.89. EHLERT S. and ULMER M.P.
2009ApJS..182...12C viz 16       D               2 276 226 Intracluster medium entropy profiles for a Chandra archival sample of galaxy clusters. CAVAGNOLO K.W., DONAHUE M., VOIT G.M., et al.
2009MNRAS.392.1509G viz 16       D               2 207 37 The distribution of active galactic nuclei in a large sample of galaxy clusters. GILMOUR R., BEST P. and ALMAINI O.
2008ApJ...675..106B 16       D               2 38 81 Scaling relations from Sunyaev-Zel'dovich effect and Chandra X-ray measurements of high-redshift galaxy clusters. BONAMENTE M., JOY M., LAROQUE S.J., et al.
2008ApJ...677....1D viz 15       D               1 260 90 Improved constraints on the acceleration history of the universe and the properties of the dark energy. DALY R.A., DJORGOVSKI S.G., FREEMAN K.A., et al.
2008ApJ...682..821C viz 15       D               1 207 33 Bandpass dependence of X-ray temperatures in galaxy clusters. CAVAGNOLO K.W., DONAHUE M., VOIT G.M., et al.
2008ApJS..174..117M viz 15       D               126 174 Images, structural properties, and metal abundances of galaxy clusters observed with Chandra ACIS-I at 0.1<z<1.3. MAUGHAN B.J., JONES C., FORMAN W., et al.
2008MNRAS.383..879A 19       D               2 43 382 Improved constraints on dark energy from Chandra X-ray observations of the largest relaxed galaxy clusters. ALLEN S.W., RAPETTI D.A., SCHMIDT R.W., et al.
2007A&A...462..429B         O           67 105 Tracing the evolution in the iron content of the intra-cluster medium. BALESTRA I., TOZZI P., ETTORI S., et al.
2007MNRAS.379..190C 15       D               1 113 120 The observed concentration-mass relation for galaxy clusters. COMERFORD J.M. and NATARAJAN P.
2007MNRAS.379..209S 16       D               4 36 113 The dark matter haloes of massive, relaxed galaxy clusters observed with Chandra. SCHMIDT R.W. and ALLEN S.W.
2006ApJ...647...25B 2 38 203 Determination of the cosmic distance scale from Sunyaev-Zel'dovich effect and Chandra X-ray measurements of high-redshift galaxy clusters. BONAMENTE M., JOY M.K., LAROQUE S.J., et al.
2006ApJ...652..917L 1 42 142 X-ray and Sunyaev-Zel'dovich effect measurements of the gas mass fraction in galaxy clusters. LAROQUE S.J., BONAMENTE M., CARLSTROM J.E., et al.
2005ApJ...619..657P 28 18 Complementary constraints from Fanaroff-Riley type IIb radio galaxies and X-ray gas mass fractions in clusters on nonstandard cosmological models. PUETZFELD D., POHL M. and ZHU Z.-H.
2004MNRAS.353..457A 9 30 566 Constraints on dark energy from Chandra observations of the largest relaxed galaxy clusters. ALLEN S.W., SCHMIDT R.W., EBELING H., et al.

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2020.08.03-20:09:37

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