Fractal distributions of dark matter and gas in the MareNostrum Universe
arXiv:0806.0730 · doi:10.1088/1475-7516/2010/03/006
Abstract
We develop a method of multifractal analysis of N-body cosmological simulations that improves on the customary counts-in-cells method by taking special care of the effects of discreteness and large scale homogeneity. The analysis of the Mare-Nostrum simulation with our method provides strong evidence of self-similar multifractal distributions of dark matter and gas, with a halo mass function that is of Press-Schechter type but has a power-law exponent -2, as corresponds to a multifractal. Furthermore, our analysis shows that the dark matter and gas distributions are indistinguishable as multifractals. To determine if there is any gas biasing, we calculate the cross-correlation coefficient, with negative but inconclusive results. Hence, we develop an effective Bayesian analysis connected with information theory, which clearly demonstrates that the gas is biased in a long range of scales, up to the scale of homogeneity. However, entropic measures related to the Bayesian analysis show that this gas bias is small (in a precise sense) and is such that the fractal singularities of both distributions coincide and are identical. We conclude that this common multifractal cosmic web structure is determined by the dynamics and is independent of the initial conditions.
36 pages, 10 EPS figures; correlation dimensions computed in a two-decade scaling range, references added
References in corpus (7)
- The Cosmic Web: Geometric Analysis
- Shape, spin and baryon fraction of clusters in the MareNostrum Universe
- Information Entropy in Cosmology
- Entropy of gas and dark matter in galaxy clusters
- Halos and voids in a multifractal model of cosmic structure
- Statistics and geometry of cosmic voids
- Statistical physics for cosmic structures
Cited by in corpus (8)
- The Fractal Geometry of the Cosmic Web and its Formation
- Statistics and geometry of cosmic voids
- Fractal analysis of the large-scale stellar mass distribution in the Sloan Digital Sky Survey
- Fractal dimension and thermodynamic fluctuation properties of IDV light curves
- Smooth halos in the cosmic web
- Characterising cosmic inhomogeneity with anomalous diffusion
- Scale Symmetry in the Universe
- Halo Models of Large Scale Structure and Reliability of Cosmological N-Body Simulations