SpARCS J003645-441050 , the SIMBAD biblio

SpARCS J003645-441050 , the SIMBAD biblio (17 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.24CEST05:07:05


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Title First 3 Authors
2012ApJ...746..188M 106       D       C       2 10 271 The Gemini cluster astrophysics spectroscopic survey (GCLASS): the role of environment and self-regulation in galaxy evolution at z ∼ 1. MUZZIN A., WILSON G., YEE H.K.C., et al.
2012MNRAS.427..550L 286       D     X   F     7 150 160 Evidence for significant growth in the stellar mass of brightest cluster galaxies over the past 10 billion years. LIDMAN C., SUHERLI J., MUZZIN A., et al.
2013MNRAS.433..825L 17       D               3 20 74 The importance of major mergers in the build up of stellar mass in brightest cluster galaxies at z = 1. LIDMAN C., IACOBUTA G., BAUER A.E., et al.
2013A&A...557A..15V 20       D               3 11 103 The environmental dependence of the stellar mass function at z ∼ 1. Comparing cluster and field between the GCLASS and UltraVISTA surveys. VAN DER BURG R.F.J., MUZZIN A., HOEKSTRA H., et al.
2014A&A...561A..79V 18       D               3 10 40 A census of stellar mass in ten massive haloes at z ∼ 1 from the GCLASS Survey. VAN DER BURG R.F.J., MUZZIN A., HOEKSTRA H., et al.
2015ApJS..216...27B viz 16       D               1 701 509 Galaxy clusters discovered via the Sunyaev-Zel'dovich effect in the 2500-square-degree SPT-SZ survey. BLEEM L.E., STALDER B., DE HAAN T., et al.
2015ApJ...812..138F 16       D               3 16 15 Evidence for the universality of properties of red-sequence galaxies in x-ray- and red-sequence-selected clusters at z ∼ 1. FOLTZ R., RETTURA A., WILSON G., et al.
2017MNRAS.467.4015H 16       D               1 74 32 Galaxy populations in massive galaxy clusters to z = 1.1: colour distribution, concentration, halo occupation number and red sequence fraction. HENNIG C., MOHR J.J., ZENTENO A., et al.
2018ApJ...867...12R viz 16       D               1 113 3 Mass-richness relations for X-ray and SZE-selected clusters at 0.4 < z < 2.0 as seen by Spitzer at 4.5 µm. RETTURA A., CHARY R., KRICK J., et al.
2019MNRAS.484..595M 20       D               1 11 41 HST/WFC3 grism observations of z ∼ 1 clusters: the cluster versus field stellar mass-size relation and evidence for size growth of quiescent galaxies from minor mergers. MATHARU J., MUZZIN A., BRAMMER G.B., et al.
2019ApJ...878...55B viz 17       D               1 678 226 Cluster cosmology constraints from the 2500 deg2 SPT-SZ survey: inclusion of weak gravitational lensing data from Magellan and the Hubble Space Telescope. BOCQUET S., DIETRICH J.P., SCHRABBACK T., et al.
2021MNRAS.500..358B viz 18       D               1 19 21 The GOGREEN and GCLASS surveys: first data release. BALOGH M.L., VAN DER BURG R.F.J., MUZZIN A., et al.
2021A&A...647A.106M viz 17       D               1 545 ~ PSZSPT: A joint Planck and SPT-SZ cluster catalog. MELIN J.-B., BARTLETT J.G., TARRIO P., et al.
2021A&A...650A.105B 17       D               1 14 9 The GOGREEN survey: Internal dynamics of clusters of galaxies at redshift 0.9-1.4. BIVIANO A., VAN DER BURG R.F.J., BALOGH M.L., et al.
2021ApJ...923..222M viz 18       D               1 11 12 HST/WFC3 grism observations of z ∼ 1 clusters: evidence for rapid outside-in environmental quenching from spatially resolved Hα maps. MATHARU J., MUZZIN A., BRAMMER G.B., et al.
2022MNRAS.510..674W 18       D               1 16 13 Satellite quenching was not important for z ∼ 1 clusters: most quenching occurred during infall. WERNER S.V., HATCH N.A., MUZZIN A., et al.
2022MNRAS.515.5479B 18       D               1 14 3 The GOGREEN survey: constraining the satellite quenching time-scale in massive clusters at z ≳ 1. BAXTER D.C., COOPER M.C., BALOGH M.L., et al.

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