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The Massively Accreting Cluster A2029

Cited 8 time in Web of Science Cited 9 time in Scopus
Authors

Sohn, Jubee; Geller, Margaret J.; Walker, Stephen A.; Dell'Antonio, Ian; Diaferio, Antonaldo; Rines, Kenneth J.

Issue Date
2019-01
Publisher
IOP PUBLISHING LTD
Citation
ASTROPHYSICAL JOURNAL, Vol.871 No.1
Abstract
We explore the structure of galaxy cluster A2029 and its surroundings based on intensive spectroscopy along with X-ray and weak lensing observations. The redshift survey includes 4376 galaxies (1215 spectroscopic cluster members) within 40' of the cluster center; the redshifts are included here. Two subsystems, A2033 and a southern infalling group (SIG), appear in the infall region based on the spectroscopy, as well as on the weak lensing and X-ray maps. The complete redshift survey of A2029 also identifies at least 12 foreground and background systems (10 are extended X-ray sources) in the A2029 field; we include a census of their properties. The X-ray luminosities (L-X)-velocity dispersions (sigma(cl)) scaling relations for A2029, A2033, SIG, and the foreground/background systems are consistent with the known cluster scaling relations. The combined spectroscopy, weak lensing, and X-ray observations provide a robust measure of the masses of A2029, A2033, and SIG. The total mass of the infalling groups (A2033 and SIG) is similar to 60% of the M-200 of the primary cluster, A2029. Simple dynamical considerations suggest that A2029 will accrete these subsystems in the next few Gyr. In agreement with simulations and other clusters observed in a similar redshift range, the total mass in the A2029 infall region is comparable to the A2029 M-200 and will mostly be accreted in the long-term future.
ISSN
0004-637X
URI
https://hdl.handle.net/10371/200751
DOI
https://doi.org/10.3847/1538-4357/aaf1cc
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  • College of Natural Sciences
  • Department of Physics and Astronomy
Research Area Compact Groups of Galaxies, HectoMAP, Velocity Dispersion Function

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