2011MNRAS.415..964L


Query : 2011MNRAS.415..964L

2011MNRAS.415..964L - Mon. Not. R. Astron. Soc., 415, 964-976 (2011/July-3)

Future virialized structures: an analysis of superstructures in the SDSS-DR7.

LUPARELLO H., LARES M., LAMBAS D.G. and PADILLA N.

Abstract (from CDS):

We construct catalogues of present superstructures that, according to a Λ cold dark matter (ΛCDM) scenario, will evolve into isolated, virialized structures in the future. We use a smoothed luminosity density map derived from galaxies in SDSS-DR7, Abazajian et al., data and separate high-luminosity density peaks. The luminosity density map is obtained from a volume-limited sample of galaxies in the spectroscopic galaxy catalogue, within the SDSS-DR7 footprint area and in the redshift range 0.04 < z < 0.12. Other two samples are constructed for calibration and testing purposes, up to z= 0.10 and 0.15. The luminosity of each galaxy is spread using an Epanechnikov kernel of 8 Mpc h–1 radius, and the map is constructed on a 1 Mpc h–1 cubic cell grid. Future virialized structures (FVSs) are identified as regions with overdensity above a given threshold, calibrated using a ΛCDM numerical simulation and the criteria presented by Dünner et al. We assume a constant mass-to-luminosity ratio and impose the further condition of a minimum luminosity of 1012 L. According to our calibrations with a numerical simulation, these criteria lead to a negligible contamination by less overdense (non-FVS) superstructures. We present a catalogue of superstructures in the SDSS-DR7 area within redshift 0.04 < z < 0.12 and test the reliability of our method by studying different subsamples as well as a mock catalogue. We compute the luminosity and volume distributions of the superstructures, finding that about 10 per cent of the luminosity (mass) will end up in future virialized structures. The fraction of groups and X-ray clusters in these superstructures is higher for groups/clusters of higher mass, suggesting that future cluster mergers will involve the most massive systems. We also analyse known structures in the present Universe and compare with our catalogue of FVSs.

Abstract Copyright: 2011 The Authors Monthly Notices of the Royal Astronomical Society2011 RAS

Journal keyword(s): methods: data analysis - methods: statistical - catalogues - large-scale structure of Universe

Simbad objects: 17

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Number of rows : 17
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 M 31 AGN 00 42 44.330 +41 16 07.50 4.86 4.36 3.44     ~ 12650 1
2 NAME VELA SUPERCL SCG 10 53.0 +02 44           ~ 38 0
3 [EES2006] 384 SCG 11 16 51.36 +54 31 28.9           ~ 1 0
4 NAME Leo A Supercluster SCG 11 37.4 -02 46           ~ 17 0
5 NAME SUPERCL UMA SCG 11 51 +54.7           ~ 51 0
6 NAME VIRGO-COMA SUPERCL SCG 12 04 +09.0           ~ 16 0
7 NAME Virgo Cluster ClG 12 26 32.1 +12 43 24           ~ 6645 0
8 NAME Virgo Region reg 12 30.8 +12 23           ~ 131 1
9 [EET2007] N152 SCG 13 06.2 -02 34           ~ 39 0
10 BSCG 11 SCG 13 47 +03.4           ~ 12 0
11 NAME BOO SUPERCL SCG 14 01.5 +25 09           ~ 28 1
12 NAME Bootes A Supercluster SCG 14 56.7 +20 53           ~ 5 0
13 NAME Corona Borealis SCG 15 25 +29.5           ~ 135 0
14 [EES2006] 761 SCG 15 33 30.57 +30 54 49.8           ~ 1 0
15 [EES2006] 805 SCG 15 58 06.01 +27 20 11.6           ~ 1 0
16 NAME Sloan Great Wall ? ~ ~           ~ 179 0
17 NAME Local Group GrG ~ ~           ~ 8391 0

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