Reionization Through the Lens of Percolation Theory
arXiv:1511.01521 · doi:10.1093/mnras/stw104
Abstract
The reionization of intergalactic hydrogen has received intense theoretical scrutiny over the past two decades. Here, we approach the process formally as a percolation process and phase transition. Using semi-numeric simulations, we demonstrate that an infinitely-large ionized region abruptly appears at an ionized fraction of ~0.1 and quickly grows to encompass most of the ionized gas: by an ionized fraction of 0.3, nearly ninety percent of the ionized material is part of this region. Throughout most of reionization, nearly all of the intergalactic medium is divided into just two regions, one ionized and one neutral, and both infinite in extent. We also show that the discrete ionized regions that exist before and near this transition point follow a near-power law distribution in volume, with equal contributions to the total filling factor per logarithmic interval in size up to a sharp cutoff in volume. These qualities are generic to percolation processes, with the detailed behavior a result of long-range correlations in the underlying density field. These insights will be crucial to understanding the distribution of ionized and neutral gas during reionization and provide precise meaning to the intuitive description of reionization as an "overlap" process.
16 pages, version accepted by MNRAS (conclusions unchanged from original)
References in corpus (21)
- Cosmic Reionization and Early Star-Forming Galaxies: A Joint Analysis of New Constraints from Planck and Hubble Space Telescope
- Efficient Simulations of Early Structure Formation and Reionization
- Reionization after Planck: The Derived Growth of the Cosmic Ionizing Emissivity now matches the Growth of the Galaxy UV Luminosity Density
- Recent advances in percolation theory and its applications
- The End of the Reionization Epoch Probed by Ly-alpha Emitters at z=6.5 in the Subaru Deep Field
- The morphology of HII regions during reionization
- PAPER-64 Constraints on Reionization: The 21cm Power Spectrum at z=8.4
- Studying Reionization with Ly-alpha Emitters
- Inside-out or Outside-in: The topology of reionization in the photon-starved regime suggested by Lyman-alpha forest data
- Detecting the Rise and Fall of 21 cm Fluctuations with the Murchison Widefield Array
- Large fluctuations in the hydrogen-ionizing background and mean free path following the epoch of reionization
- Empirical Covariance Modeling for 21 cm Power Spectrum Estimation: A Method Demonstration and New Limits from Early Murchison Widefield Array 128-Tile Data
- Cosmic Reionization On Computers II. Reionization History and Its Back Reaction on Early Galaxies
- Lyman-alpha Emitters During the Early Stages of Reionization
- SCORCH I: The Galaxy-Halo Connection in the First Billion Years
- Effect of the intergalactic environment on the observability of Ly-alpha emitters during reionization
- The morphology of cosmological reionization by means of Minkowski Functionals
- The Topology of Cosmological Reionization
- The Persistent Percolation of Single-Stream Voids
- Two-dimensional Topology of Cosmological Reionization
- Local reionizations histories with merger tree of HII regions
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