Clustering of 2PIGG galaxy groups with 2dFGRS galaxies
Georgios Mountrichas, Tom Shanks

TL;DR
This study investigates the mass and bias of galaxy groups using redshift distortions in the 2dFGRS, revealing a minimum in bias at intermediate group sizes and implications for star-formation efficiency.
Contribution
It provides new dynamical infall estimates of galaxy group masses and bias, highlighting a minimum bias at intermediate group membership and comparing observational data with mock simulations.
Findings
Bias and M/L ratios rise significantly for small groups and rich clusters.
The beta versus membership relation shows a minimum at intermediate group sizes.
Systematic differences exist between observational estimates and mock predictions.
Abstract
Prompted by indications from QSO lensing that there may be more mass associated with galaxy groups than expected, we have made new dynamical infall estimates of the masses associated with 2PIGG groups and clusters. We have analysed the redshift distortions in the cluster-galaxy cross-correlation function as a function of cluster membership, cross-correlating z<0.12 2PIGG clusters and groups with the full 2dF galaxy catalogue. We have made estimates of the dynamical infall parameter beta and new estimates of the group velocity dispersions. We first find that the amplitude of the full 3-D redshift space cross-correlation function, xi_{cg}, rises monotonically with group membership. We use a simple linear-theory infall model to fit xi(sigma, pi) in the range 5<s<40h^{-1}Mpc. We find that the beta versus membership relation for the data shows a minimum at intermediate group membership n~20…
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Taxonomy
TopicsScientific Research and Discoveries · Astronomy and Astrophysical Research · Galaxies: Formation, Evolution, Phenomena
