SIMBAD references

2008ApJ...684..160M - Astrophys. J., 684, 160-176 (2008/September-1)

The spatial distribution of galaxies of different spectral types in the massive intermediate-redshift cluster MACS J0717.5+3745.

MA C.-J., EBELING H., DONOVAN D. and BARRETT E.

Abstract (from CDS):

We present the results of a wide-field spectroscopic analysis of the galaxy population of the massive cluster MACS J0717.5+3745 and the surrounding filamentary structure (z=0.55), as part of our systematic study of the 12 most distant clusters in the MACS sample. Of 1368 galaxies spectroscopically observed in this field, 563 are identified as cluster members; of those, 203 are classified as emission-line galaxies, 260 as absorption-line galaxies, and 17 as E+A galaxies (defined by Hδ+Hγ/2>6 Å and no detection of [O II] and Hβ in emission). The variation of the fraction of emission- and absorption-line galaxies as a function of local projected galaxy density confirms the well-known morphology-density relation, and becomes flat at projected galaxy densities less than ∼20/Mpc2. Interestingly, 16 out of 17 E+A galaxies lie (in projection) within the ram-pressure stripping radius around the cluster core, which we take to be direct evidence that ram-pressure stripping is the primary mechanism that terminates star formation in the E+A population of galaxy clusters. This conclusion is supported by the rarity of E+A galaxies in the filament, which rules out galaxy mergers as the dominant driver of evolution for E+A galaxies in clusters. In addition, we find that the 42 e(a) and 27 e(b) member galaxies, i.e., the dusty-starburst and starburst galaxies respectively, are spread out across almost the entire study area. Their spatial distribution, which shows a strong preference for the filament region, suggests that starbursts are triggered in relatively low-density environments as galaxies are accreted from the field population.

Abstract Copyright:

Journal keyword(s): galaxies: clusters: individual (MACS J0717.5+3745) - Galaxies: Elliptical and Lenticular, cD - Galaxies: Evolution - Galaxies: Starburst - Cosmology: Large-Scale Structure of Universe - Techniques: Spectroscopic

Simbad objects: 6

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