PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
June 8, 2004The Astrophysical Journal94 citationsOpen Access

Discovery of a Large-Scale Filament Connected to the Massive Galaxy Cluster MACS J0717.5+3745 at z  = 0.55

Key Points

  • To identify and characterize genuine large-scale filamentary structures feeding the massive distant galaxy cluster MACS J0717.5+3745 at redshift z = 0.55.
  • Identified galaxy overdensities by selecting targets with V - R colors consistent with the cluster red sequence.
  • Conducted spectroscopic follow-up of over 300 candidate galaxies across the cluster and filament region to verify redshift alignment.
  • Detected a 4 h^-1 Mpc filament at z = 0.545 extending well beyond the cluster nominal virial radius of ~2.3 Mpc, ruling out a merger remnant.
  • Measured typical galaxy surface densities of 15 Mpc^-2 down to luminosities of 0.13 L* in the most diffuse parts of the filament.

Abstract

We report the detection of a 4 h Mpc long large-scale filament leading into the massive galaxy cluster MACS J0717.5+3745. The extent of this object well beyond the cluster's nominal virial radius (~2.3 Mpc) rules out prior interaction between its constituent galaxies and the cluster and makes it a prime candidate for a genuine filament as opposed to a merger remnant or a double cluster. The structure was discovered as a pronounced overdensity of galaxies selected to have V - R colors close to the cluster red sequence. Extensive spectroscopic follow-up of over 300 of these galaxies in a region covering the filament and the cluster confirms that the entire structure is located at the cluster redshift of z = 0.545. Featuring galaxy surface densities of typically 15 Mpc -2 down to luminosities of 0.13 L , the most diffuse parts of the filament are comparable in density to the clumps of red galaxies found around A851 in the only similar study carried out to date (Kodama et al.). Our direct detection of an extended large-scale filament funneling matter onto a massive distant cluster provides a superb target for in-depth studies of the evolution of galaxies in environments of greatly varying density and supports the predictions from theoretical models and numerical simulations of structure formation in a hierarchical picture.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

A 2004 study studied this question.

synapsesocial.com/papers/6a7c9a0a83cb829ce1c893dfhttps://doi.org/10.1086/422750
Ask AI
Helpful
Bookmark
Share
View Full Paper