arXiv · astro-ph/0003124
Primordial fractal density perturbations and structure formation in the Universe: 1-Dimensional collisionless sheet model
Abstract
Two-point correlation function of galaxy distribution shows that the structure in the present Universe is scale-free up to a certain scale (at least several tens Mpc), which suggests that a fractal structure may exist. If small primordial density fluctuations have a fractal structure, the present fractal-like nonlinear structure below the horizon scale could be naturally explained. We analyze the time evolution of fractal density perturbations in Einstein-de Sitter universe, and study how the perturbation evolves and what kind of nonlinear structure will come out. We assume a one-dimensional collisionless sheet model with initial Cantor-type fractal perturbations. The nonlinear structure seems to approach some attractor with a unique fractal dimension, which is independent of the fractal dimensions of initial perturbations. A discrete self-similarity in the phase space is also found when the universal nonlinear fractal structure is reached.
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Takayuki Tatekawa, Kei-ichi Maeda. 2000-11-12. Primordial fractal density perturbations and structure formation in the Universe: 1-Dimensional collisionless sheet model. https://doi.org/10.1086/318392
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