2018ApJ...856....8C


Query : 2018ApJ...856....8C

2018ApJ...856....8C - Astrophys. J., 856, 8-8 (2018/March-3)

The KMOS Cluster Survey (KCS). II. The effect of environment on the structural properties of massive Cluster galaxies at redshift 1.39 < z < 1.61.

CHAN J.C.C., BEIFIORI A., SAGLIA R.P., MENDEL J.T., STOTT J.P., BENDER R., GALAMETZ A., WILMAN D.J., CAPPELLARI M., DAVIES R.L., HOUGHTON R.C.W., PRICHARD L.J., LEWIS I.J., SHARPLES R. and WEGNER M.

Abstract (from CDS):

We present results on the structural properties of massive passive galaxies in three clusters at 1.39 < z < 1.61 from the KMOS Cluster Survey. We measure light-weighted and mass-weighted sizes from optical and near-infrared Hubble Space Telescope imaging and spatially resolved stellar mass maps. The rest-frame R-band sizes of these galaxies are a factor of ∼2-3 smaller than their local counterparts. The slopes of the relation between the stellar mass and the light-weighted size are consistent with recent studies in clusters and the field. Their mass-weighted sizes are smaller than the rest-frame R-band sizes, with an average mass-weighted to light-weighted size ratio that varies between ∼0.45 and 0.8 among the clusters. We find that the median light-weighted size of the passive galaxies in the two more evolved clusters is ∼24% larger than that for field galaxies, independent of the use of circularized effective radii or semimajor axes. These two clusters also show a smaller size ratio than the less evolved cluster, which we investigate using color gradients to probe the underlying M*/LH160_ gradients. The median color gradients are ∇z - H ∼ -0.4 mag dex–1, twice the local value. Using stellar populations models, these gradients are best reproduced by a combination of age and metallicity gradients. Our results favor the minor merger scenario as the dominant process responsible for the observed galaxy properties and the environmental differences at this redshift. The environmental differences support that clusters experience accelerated structural evolution compared to the field, likely via an epoch of enhanced minor merger activity during cluster assembly.

Abstract Copyright: © 2018. The American Astronomical Society. All rights reserved.

Journal keyword(s): galaxies: clusters: general - galaxies: elliptical and lenticular, cD - galaxies: formation - galaxies: fundamental parameters - galaxies: high redshift - galaxy: evolution

Nomenclature: Table 11: [BMC2017] XMM2215 NNNN N=39 among (Nos 412-1261) added. Table 12: [BMC2017] Cl0332 NNNNN N=13 among (Nos 12347-25989) added.

Simbad objects: 102

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Number of rows : 102
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 JKCS 41 ClG 02 26 44.0 -04 41 36           ~ 52 0
2 EIS-DEEP CDFS-1 Ks 1 135 G 03 32 07.418 -27 44 17.45   28.15 26.47     ~ 8 0
3 ZFOURGE CDFS 18812 AGN 03 32 10.5200 -27 46 28.923   27.878 26.415 25.88 24.8490 ~ 20 0
4 ATCDFS J033210.80-274629.2 AGN 03 32 10.797 -27 46 28.11   24.593 25.416 23.110 23.286 ~ 53 0
5 EIS-DEEP CDFS-1 J 1 801 G 03 32 11.200 -27 46 19.81           ~ 11 0
6 [SWM2014] GOODS-S 29954 AGN 03 32 11.78 -27 46 28.5   26.64   26.27 25.531 ~ 50 0
7 ACS-GC 90107802 AGN 03 32 12.54 -27 46 29.5   27.514 25.775 24.73 24.038 ~ 34 0
8 GMASS 2355 G 03 32 14.317 -27 43 32.82   27.35     25.0466 ~ 15 0
9 CXOCDFS J033215.2-274335 AGN 03 32 15.06 -27 43 35.9   25.8904   24.776 23.8868 ~ 32 0
10 GOODS-MUSIC 14548 G 03 32 15.418 -27 43 39.46   27.69 27.17     ~ 11 0
11 ACS-GC 90107861 AGN 03 32 25.095 -27 42 19.53   24.3342 23.8948 22.9388 22.1407 ~ 22 0
12 GMASS 2361 G 03 32 26.043 -27 42 36.54   27.7658     25.1306 ~ 24 0
13 GMASS 2111 G 03 32 27.936 -27 42 45.69   27.98     24.9589 ~ 20 0
14 NAME GOODS Southern Field reg 03 32 28.0 -27 48 30           ~ 1342 1
15 ClG J0332-2742 ClG 03 32 29.280 -27 42 35.99           ~ 14 0
16 ACS-GC 90044741 AGN 03 32 29.478 -27 43 22.12   24.9899 24.73 24.94 24.0969 ~ 30 0
17 GMASS 2286 G 03 32 29.992 -27 43 22.65   28.00 26.72 25.572 22.313 ~ 21 0
18 GOODS J033231.05-274226.5 G 03 32 31.050 -27 42 26.46   25.057   22.801 24.3493 ~ 11 0
19 GMASS 2148 AGN 03 32 36.283 -27 42 49.41   25.899 26.24 25.81 24.4278 ~ 33 0
20 GMASS 2196 G 03 32 36.656 -27 42 58.51   27.82     24.8489 ~ 20 0
21 ACT-CL J0546-5346 ClG 05 46 35.0 -53 46 04           ~ 86 0
22 NAME COSMOS Field reg 10 00 28.60 +02 12 21.0           ~ 2974 0
23 ACO 1656 ClG 12 59 44.40 +27 54 44.9           ~ 4803 2
24 [BMC2017] XMM2215 964 G 22 15 54.628 -17 37 55.34           ~ 1 0
25 SSTU J221554.62-173855.0 G 22 15 54.643 -17 38 55.17           ~ 3 0
26 [BMC2017] XMM2215 1240 GiC 22 15 55.210 -17 37 22.44         23.65 ~ 3 0
27 [BMC2017] XMM2215 798 G 22 15 55.225 -17 38 04.25           ~ 2 0
28 [BMC2017] XMM2215 710 G 22 15 56.064 -17 38 20.66           ~ 3 0
29 [BMC2017] XMM2215 1153 G 22 15 56.194 -17 37 31.80           ~ 1 0
30 [BMC2017] XMM2215 1006 GiC 22 15 56.196 -17 37 49.93         23.64 ~ 5 0
31 [BMC2017] XMM2215 1121 G 22 15 56.309 -17 37 37.78           ~ 1 0
32 [BMC2017] XMM2215 1113 G 22 15 56.312 -17 37 38.27           ~ 1 0
33 [BMC2017] XMM2215 790 G 22 15 56.328 -17 38 10.04           ~ 1 0
34 [BMC2017] XMM2215 1261 G 22 15 56.798 -17 37 21.32           ~ 1 0
35 SSTU J221556.92-173804.7 GiC 22 15 56.92 -17 38 05.0         23.03 ~ 7 0
36 [HLS2010] 35 GiC 22 15 57.23 -17 37 53.2   25.15     23.78 ~ 14 0
37 [BMC2017] XMM2215 840 G 22 15 57.249 -17 38 02.62           ~ 1 0
38 [BMC2017] XMM2215 940 G 22 15 57.28 -17 37 58.0           ~ 6 0
39 [BMC2017] XMM2215 919 G 22 15 57.51 -17 38 00.5           ~ 6 0
40 [BMC2017] XMM2215 1038 G 22 15 57.717 -17 37 45.78   25.44       ~ 2 0
41 [BMC2017] XMM2215 732 G 22 15 58.05 -17 38 18.7           ~ 6 0
42 [BMC2017] XMM2215 776 G 22 15 58.16 -17 38 14.5           ~ 8 0
43 SSTU J221558.22-173822.1 G 22 15 58.23 -17 38 22.2           ~ 9 0
44 [BMC2017] XMM2215 824 G 22 15 58.380 -17 38 06.49           ~ 2 0
45 [BMC2017] XMM2215 977 G 22 15 58.403 -17 37 53.69           ~ 2 0
46 [BFT2010] 333.9937-17.6329 GiC 22 15 58.483 -17 37 58.59         23.24 ~ 6 0
47 [BFT2010] 333.9937-17.6362 GiC 22 15 58.499 -17 38 10.55         23.53 ~ 7 1
48 ClG J2215-1738 ClG 22 15 58.5 -17 38 03           ~ 101 0
49 [BMC2017] XMM2215 1051 G 22 15 58.54 -17 37 47.7           ~ 8 0
50 [BMC2017] XMM2215 780 AGN 22 15 58.871 -17 38 09.87   23.95     22.75 ~ 5 0
51 [BFT2010] 333.9953-17.6332 GiC 22 15 58.880 -17 37 59.21         23.49 ~ 6 0
52 [BMC2017] XMM2215 864 GiC 22 15 59.047 -17 38 02.62         23.34 ~ 6 0
53 [BMC2017] XMM2215 1118 G 22 15 59.081 -17 37 38.01           ~ 2 0
54 [BMC2017] XMM2215 971 GiC 22 15 59.142 -17 37 54.27         24.36 ~ 4 0
55 [BMC2017] XMM2215 871 G 22 15 59.368 -17 38 01.92           ~ 1 0
56 [BMC2017] XMM2215 845 G 22 15 59.559 -17 38 05.23           ~ 2 0
57 [BMC2017] XMM2215 910 G 22 15 59.692 -17 37 59.82           ~ 3 0
58 SSTU J221559.68-173758.9 GiC 22 15 59.72 -17 37 59.0           ~ 10 0
59 [BMC2017] XMM2215 912 GiC 22 15 59.884 -17 37 59.29           ~ 4 0
60 [BMC2017] XMM2215 997 G 22 15 59.97 -17 37 50.6           ~ 3 0
61 [BMC2017] XMM2215 724 G 22 15 59.974 -17 38 20.18           ~ 1 0
62 SSTU J221600.14-173836.8 G 22 16 00.153 -17 38 36.95           ~ 2 0
63 [BMC2017] XMM2215 1088 G 22 16 00.399 -17 37 42.75           ~ 2 0
64 SSTU J221600.38-173750.5 GiC 22 16 00.41 -17 37 50.7         23.52 ~ 8 0
65 [BMC2017] XMM2215 575 G 22 16 00.581 -17 38 35.73           ~ 1 0
66 [BMC2017] XMM2215 562 G 22 16 00.599 -17 38 36.49           ~ 2 0
67 [BMC2017] XMM2215 999 GiC 22 16 00.667 -17 37 51.62         23.66 ~ 4 1
68 [BMC2017] XMM2215 729 G 22 16 00.937 -17 38 18.19           ~ 2 0
69 2XMM J221601.2-173722 AG? 22 16 01.193 -17 37 22.64           ~ 3 0
70 [CBM2016] 77 G 22 35 16.340 -25 58 19.25           ~ 2 0
71 [CBM2016] 618 G 22 35 17.673 -25 56 55.66           ~ 3 0
72 [CBM2016] 198 G 22 35 17.8670 -25 56 13.060           ~ 4 0
73 [CBM2016] 239 G 22 35 17.937 -25 56 31.67           ~ 2 0
74 [CBM2016] 159 G 22 35 18.084 -25 58 06.23           ~ 4 0
75 [CBM2016] 433 G 22 35 19.0460 -25 57 51.420           ~ 6 0
76 [CBM2016] 36 G 22 35 19.0780 -25 58 27.320           ~ 6 0
77 [CBM2016] 357 G 22 35 19.197 -25 57 35.10           ~ 2 0
78 [CBM2016] 588 G 22 35 19.358 -25 56 55.83           ~ 3 0
79 [CBM2016] 148 G 22 35 20.010 -25 58 02.20           ~ 2 0
80 [CBM2016] 365 G 22 35 20.156 -25 57 36.44           ~ 2 0
81 ClG J2235-2557 ClG 22 35 20.6 -25 57 42           ~ 147 0
82 [CBM2016] 352 G 22 35 20.7070 -25 57 44.430 24.6         ~ 6 0
83 [CBM2016] 407 G 22 35 20.7070 -25 57 37.700           ~ 6 0
84 [CBM2016] 170 G 22 35 20.8390 -25 57 39.760 24.30         ~ 6 0
85 [CBM2016] 368 G 22 35 20.9200 -25 57 35.900           ~ 4 0
86 [CBM2016] 385 G 22 35 20.962 -25 57 35.07           ~ 2 0
87 [CBM2016] 552 G 22 35 21.262 -25 57 11.52           ~ 2 0
88 [CBM2016] 558 G 22 35 21.467 -25 56 58.11           ~ 2 0
89 [CBM2016] 296 G 22 35 21.620 -25 57 25.50           ~ 3 0
90 [CBM2016] 343 G 22 35 21.760 -25 57 33.48           ~ 2 0
91 [CBM2016] 534 G 22 35 21.797 -25 57 13.78           ~ 4 0
92 [CBM2016] 576 G 22 35 21.971 -25 56 56.88           ~ 3 0
93 [CBM2016] 642 G 22 35 22.156 -25 57 05.85           ~ 2 0
94 [CBM2016] 637 G 22 35 22.771 -25 57 05.90           ~ 4 0
95 [CBM2016] 220 G 22 35 22.8140 -25 56 24.920           ~ 6 0
96 [CBM2016] 478 G 22 35 24.8950 -25 56 37.030           ~ 4 0
97 [CBM2016] 599 G 22 35 25.444 -25 56 52.57           ~ 2 0
98 [CBM2016] 585 G 22 35 25.6800 -25 56 58.480           ~ 4 0
99 [CBM2016] 611 G 22 35 25.788 -25 56 58.27           ~ 2 0
100 [CBM2016] 571 G 22 35 25.8040 -25 56 46.000 25.9         ~ 4 0
101 [CBM2016] 617 G 22 35 26.008 -25 56 56.05           ~ 2 0
102 NGC 7314 Sy2 22 35 46.1985355872 -26 03 01.564993476   11.62 13.11 10.61 11.4 ~ 565 0

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