Voids in cosmological simulations over cosmic time
arXiv:1602.08541 · doi:10.1093/mnras/stw615
Abstract
We study evolution of voids in cosmological simulations using a new method for tracing voids over cosmic time. The method is based on tracking watershed basins (contiguous regions around density minima) of well developed voids at low redshift, on a regular grid of density field. It enables us to construct a robust and continuous mapping between voids at different redshifts, from initial conditions to the present time. We discuss how the new approach eliminates strong spurious effects of numerical origin when voids evolution is traced by matching voids between successive snapshots (by analogy to halo merger trees). We apply the new method to a cosmological simulation of a standard LambdaCDM cosmological model and study evolution of basic properties of typical voids (with effective radii between 6Mpc/h and 20Mpc/h at redshift z=0) such as volumes, shapes, matter density distributions and relative alignments. The final voids at low redshifts appear to retain a significant part of the configuration acquired in initial conditions. Shapes of voids evolve in a collective way which barely modifies the overall distribution of the axial ratios. The evolution appears to have a weak impact on mutual alignments of voids implying that the present state is in large part set up by the primordial density field. We present evolution of dark matter density profiles computed on iso-density surfaces which comply with the actual shapes of voids. Unlike spherical density profiles, this approach enables us to demonstrate development of theoretically predicted bucket-like shape of the final density profiles indicating a wide flat core and a sharp transition to high-density void walls.
13 pages, 13 figures; accepted for publication in MNRAS
References in corpus (11)
- Properties of Dark Matter Haloes in Clusters, Filaments, Sheets and Voids
- ZOBOV: a parameter-free void-finding algorithm
- The Aspen--Amsterdam Void Finder Comparison Project
- The darkness that shaped the void: dark energy and cosmic voids
- Alignments of Voids in the Cosmic Web
- An exact general remeshing scheme applied to physically conservative voxelization
- The Persistent Percolation of Single-Stream Voids
- The life and death of cosmic voids
- Dark Matter Gravitational Clustering With a Long-Range Scalar Interaction
- Statistical properties of the linear tidal shear
- Structure in the 3D Galaxy Distribution: II. Voids and Watersheds of Local Maxima and Minima
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