Abstract
We determine the shape, multiplicity, size, and radial structure of superclusters in the LambdaCDM concordance cosmology from z = 0 to z = 2. Superclusters are defined as clusters of clusters in our large-scale cosmological simulation. We find that superclusters are triaxial in shape; many have flattened since early times to become nearly two-dimensional structures at present, with a small fraction of filamentary systems. The size and multiplicity functions are presented at different redshifts. Supercluster sizes extend to scales of ~ 100 - 200 Mpc/h. The supercluster multiplicity (richness) increases linearly with supercluster size. The density profile in superclusters is approximately isothermal (~ R^{-2}) and steepens on larger scales. These results can be used as a new test of the current cosmology when compared with upcoming observations of large-scale surveys.
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CITATION STYLE
Wray, J. J., Bahcall, N. A., Bode, P., Boettiger, C., & Hopkins, P. F. (2006). The Shape, Multiplicity, and Evolution of Superclusters in ΛCDM Cosmology. The Astrophysical Journal, 652(2), 907–916. https://doi.org/10.1086/508600
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