ClG 0021+0406 , the SIMBAD biblio

ClG 0021+0406 , the SIMBAD biblio (48 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.20CEST03:12:54


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Title First 3 Authors
1986ApJ...306...30G viz 420 198 A systematic survey for distant galaxy clusters. GUNN J.E., HOESSEL J.G. and OKE J.B.
1998AJ....116..549O 1 10 52 A study of nine high-redshift clusters of galaxies. I. The survey. OKE J.B., POSTMAN M. and LUBIN L.M.
1998AJ....116..560P viz 51   K                 2 94 A study of nine high-redshift clusters of galaxies. II. Photometry, spectra, and ages of clusters 0023+0423 and 1604+4304. POSTMAN M., LUBIN L.M. and OKE J.B.
1998AJ....116..584L viz 85 T                   2 79 A study of nine high-redshift clusters of galaxies. III. Hubble space telescope morphology of clusters
0023+0423 and 1604+4304.
LUBIN L.M., POSTMAN M., OKE J.B., et al.
1998AJ....116..643L 36   K                 10 22 A group-group merger at a redshift of z = 0.84?. LUBIN L.M., POSTMAN M. and OKE J.B.
2000AJ....119.2556L 20 43 Extremely red objects in the field of QSO 1213-0017: a galaxy concentration at z=1.31. LIU M.C., DEY A., GRAHAM J.R., et al.
2000AJ....120.2148G 16 11 546 A new method for galaxy cluster detection. I. The algorithm. GLADDERS M.D. and YEE H.K.C.
2000AJ....120.2851B 10 27 A probabilistic quantification of galaxy cluster membership. BRUNNER R.J. and LUBIN L.M.
2000ApJ...528..123T viz 1 9 32 A rich cluster of galaxies near the quasar B2 1335+28 at z=1.1: color distribution and star formation properties. TANAKA I., YAMADA T., ARAGON-SALAMANCA A., et al.
2000ApJ...539..577F viz 303 57 Galaxy morphologies in the cluster Cl 1358+62 at z=0.33. FABRICANT D., FRANX M. and VAN DOKKUM P.
2000PASJ...52...61K 2 3 26 Color-magnitude sequence in the clusters at z - 1.2 near the radio galaxy 3C 324. KAJISAWA M., YAMADA T., TANAKA I., et al.
2001ApJ...548...79G 51 121 Evolution of the internal dynamics of galaxy clusters. GIRARDI M. and MEZZETTI M.
2001ApJ...550..612F 2 3 19 Ram-pressure stripping of galaxies in high-redshift clusters and the influence of intracluster medium heating. FUJITA Y.
2002A&A...386..816B 85 67 The dynamical status of the cluster of galaxies 1E 0657-56. BARRENA R., BIVIANO A., RAMELLA M., et al.
2002AJ....124.1905L 107 52 Evidence for cluster evolution from an improved measurement of the velocity dispersion and morphological fraction of cluster 1324+3011 at z=0.76. LUBIN L.M., OKE J.B. and POSTMAN M.
2002ApJS..142..153S viz 52 29 Optical and near-infrared photometry of distant galaxy clusters. STANFORD S.A., EISENHARDT P.R., DICKINSON M., et al.
2002MNRAS.336.1293B 23 13 An excess of submillimetre sources towards z ∼ 1 clusters. BEST P.N.
2004A&A...424.1097S viz 15       D               1 1674 24 Introducing BAX: A database for X-ray clusters and groups of galaxies. SADAT R., BLANCHARD A., KNEIB J.-P., et al.
2004AJ....127.2484H viz 2 11 78 Evolution in the color-magnitude relation of early-type galaxies in clusters of galaxies at z≃1. HOLDEN B.P., STANFORD S.A., EISENHARDT P., et al.
2004ApJ...604..141F viz 39   K                 5 36 Hα-derived star formation rates for the z = 0.84 galaxy cluster
Cl J0023+0423B.
FINN R.A., ZARITSKY D. and McCARTHY D.W.Jr
2004MNRAS.354.1103K 3 8 93 A panoramic Hα imaging survey of the z= 0.4 cluster Cl0024.0+1652 with Subaru. KODAMA T., BALOGH M.L., SMAIL I., et al.
2005A&A...429..101S viz 62 3 The intermediate-redshift galaxy cluster CL 0048-2942. Stellar populations. SEROTE ROOS M., LOBO C., DURRET F., et al.
2005AJ....130.2559Y 1 5 16 Morphological dependence of star formation properties for the galaxies in the merging galaxy cluster A2255. YUAN Q., ZHAO L., YANG Y., et al.
2005ApJ...621..651H 41 41 The transformation of cluster galaxies at intermediate redshift. HOMEIER N.L., DEMARCO R., ROSATI P., et al.
2005ApJ...630..206F viz 267 138 Hα-derived star formation rates for three z≃0.75 EDisCS galaxy clusters. FINN R.A., ZARITSKY D., McCARTHY D.W.Jr, et al.
2005MNRAS.356L...6G 10 1 32 Do star formation rates of galaxy clusters depend on mass? Blue/late-type fractions and total star formation rates of 115 galaxy clusters as a function of cluster virial mass. GOTO T.
2005MNRAS.357..679N 1 6 19 The evolution of [OII] emission from cluster galaxies. NAKATA F., BOWER R.G., BALOGH M.L., et al.
2007MNRAS.376.1073Z viz 165       D     X   F     4 52 26 A study of the Sunyaev-Zel'dovich increment using archival SCUBA data. ZEMCOV M., BORYS C., HALPERN M., et al.
2008ApJ...684..888P 2 24 131 The relation between star formation, morphology, and local density in high-redshift clusters and groups. POGGIANTI B.M., DESAI V., FINN R., et al.
2009AJ....137.4867L 380 T   A D S   X C       8 23 48 The observations of redshift evolution in large-scale environments (ORELSE) survey. I. The survey design and first results on
CL 0023+0423 at z = 0.84 and RX J1821.6+6827 at z = 0.82.
LUBIN L.M., GAL R.R., LEMAUX B.C., et al.
2009AJ....138..986K 343   K A D     X C       9 3 15 The disappearance of Lyα blobs: a GALEX search at z = 0.8. KEEL W.C., WHITE R.E., CHAPMAN S., et al.
2009ApJ...703L..33K 1538     A S   X C F     38 15 3 No evidence of quasar-mode feedback in a four-way group merger at z ∼ 0.84. KOCEVSKI D.D., LUBIN L.M., LEMAUX B.C., et al.
2010MNRAS.403.1611K 155           X   F     3 16 79 Panoramic Hα and mid-infrared mapping of star formation in a z = 0.8 cluster. KOYAMA Y., KODAMA T., SHIMASAKU K., et al.
2010MNRAS.407...83E 77               F     1 63 187 The X-ray brightest clusters of galaxies from the massive cluster survey. EBELING H., EDGE A.C., MANTZ A., et al.
2010ApJ...721..424Z 15       D               1 30 26 Contribution of lensed SCUBA galaxies to the cosmic infrared background. ZEMCOV M., BLAIN A., HALPERN M., et al.
2011ApJ...738...65T 77           X         2 17 6 A census of mid-infrared-selected active galactic nuclei in massive galaxy clusters at 0 ≲ z ≲ 1.3. TOMCZAK A.R., TRAN K.-V.H. and SAINTONGE A.
2012ApJ...746..155R 2840       D S   X C       72 44 15 The evolution and environments of X-ray emitting active galactic nuclei in high-redshift large-scale structures. RUMBAUGH N., KOCEVSKI D.D., GAL R.R., et al.
2014A&A...561A.112G 134       D     X C       3 138 18 Structure and substructure analysis of DAFT/FADA galaxy clusters in the [0.4-0.9] redshift range. GUENNOU L., ADAMI C., DURRET F., et al.
2015MNRAS.450.3675S viz 40           X         1 571 34 CoMaLit - IV. Evolution and self-similarity of scaling relations with the galaxy cluster mass. SERENO M. and ETTORI S.
2017MNRAS.466..496R 3330     A D     X C       82 80 8 X-ray-emitting active galactic nuclei from z = 0.6 to 1.3 in the intermediate- and high-density environments of the ORELSE survey. RUMBAUGH N., LEMAUX B.C., TOMCZAK A., et al.
2017MNRAS.472.3512T 42           X         1 11 18 Glimpsing the imprint of local environment on the galaxy stellar mass function. TOMCZAK A.R., LEMAUX B.C., LUBIN L.M., et al.
2017MNRAS.472..419L 2130       D     X C F     51 7 20 Chronos and KAIROS: MOSFIRE observations of post-starburst galaxies in z ∼ 1 clusters and groups. LEMAUX B.C., TOMCZAK A.R., LUBIN L.M., et al.
2017MNRAS.472..998S 789       D S   X C       18 8 11 The properties of radio galaxies and the effect of environment in large-scale structures at z ∼ 1. SHEN L., MILLER N.A., LEMAUX B.C., et al.
2018MNRAS.478.1403R 140       D     X         4 20 6 Evaluating tests of virialization and substructure using galaxy clusters in the ORELSE survey. RUMBAUGH N., LEMAUX B.C., TOMCZAK A.R., et al.
2019MNRAS.484.2433S 184       D     X C       4 11 5 Possible evidence of the radio AGN quenching of neighbouring galaxies at z ∼ 1. SHEN L., TOMCZAK A.R., LEMAUX B.C., et al.
2019MNRAS.484.4695T 100       D     X         3 12 8 Conditional quenching: a detailed look at the SFR-density relation at z ∼ 0.9 from ORELSE. TOMCZAK A.R., LEMAUX B.C., LUBIN L.M., et al.
2019MNRAS.490.1231L 61       D     X         2 20 45 Persistence of the colour-density relation and efficient environmental quenching to z ∼ 1.4. LEMAUX B.C., TOMCZAK A.R., LUBIN L.M., et al.
2020MNRAS.494.5374S 187       D     X         5 8 ~ The properties of radio and mid-infrared detected galaxies and the effect of environment on the co-evolution of AGN and star formation at z ∼ 1. SHEN L., LEMAUX B.C., LUBIN L.M., et al.

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