English

Preprocessing Among the Infalling Galaxy Population of EDisCS Clusters

Astrophysics of Galaxies 2019-10-30 v2

Abstract

We present results from a low-resolution spectroscopic survey for 21 galaxy clusters at 0.4<z<0.80.4 < z < 0.8 selected from the ESO Distant Cluster Survey. We measured spectra using the low-dispersion prism in IMACS on the Magellan Baade telescope and calculate redshifts with an accuracy of σz=0.007\sigma_z = 0.007. We find 1763 galaxies that are brighter than R=22.9R = 22.9 in the large-scale cluster environs. We identify the galaxies expected to be accreted by the clusters as they evolve to z=0z = 0 using spherical infall models and find that 30%\sim30\% to 70%\sim70\% of the z=0z = 0 cluster population lies outside the virial radius at z0.6z \sim 0.6. For analogous clusters at z=0z = 0, we calculate that the ratio of galaxies that have fallen into the clusters since z0.6z \sim 0.6 to those that were already in the core at that redshift is typically between 0.3\sim0.3 and 1.51.5. This wide range of ratios is due to intrinsic scatter and is not a function of velocity dispersion, so a variety of infall histories is to be expected for clusters with current velocity dispersions of 300σ1200300 \lesssim\sigma\lesssim 1200 km s1^{-1}. Within the infall regions of z0.6z \sim 0.6 clusters, we find a larger red fraction of galaxies than in the field and greater clustering among red galaxies than blue. We interpret these findings as evidence of "preprocessing", where galaxies in denser local environments have their star formation rates affected prior to their aggregation into massive clusters, although the possibility of backsplash galaxies complicates the interpretation.

Keywords

Cite

@article{arxiv.1506.02051,
  title  = {Preprocessing Among the Infalling Galaxy Population of EDisCS Clusters},
  author = {Dennis W. Just and Matthew Kirby and Dennis Zaritsky and Gregory Rudnick and Tyler Desjardins and Richard Cool and John Moustakas and Douglas Clowe and Gabriella De Lucia and Alfonso Aragon-Salamanca and Vandana Desai and Rose Finn and Claire Halliday and Pascale Jablonka and Justin Mann and Bianca Poggianti and Fu-Yan Bian and Kelley Liebst},
  journal= {arXiv preprint arXiv:1506.02051},
  year   = {2019}
}

Comments

Accepted for publication in ApJ

R2 v1 2026-06-22T09:48:16.523Z