Cosmic Reionization On Computers III. The Clumping Factor
arXiv:1412.5607 · doi:10.1088/0004-637X/810/2/154
Abstract
We use fully self-consistent numerical simulations of cosmic reionization, completed under the Cosmic Reionization On Computers (CROC) project, to explore how well the recombinations in the ionized IGM can be quantified by the effective "clumping factor." The density distribution in the simulations (and, presumably, in a real universe) is highly inhomogeneous and more-or-less smoothly varying in space. However, even in highly complex and dynamic environments the concept of the IGM remains reasonably well-defined; the largest ambiguity comes from the unvirialized regions around galaxies that are over-ionized by the local enhancement in the radiation field ("proximity zones"). That ambiguity precludes computing the IGM clumping factor to better than about 20\%. We also discuss a "local clumping factor," defined over a particular spatial scale, and quantify its scatter on a given scale and its variation as a function of scale.
9 pages, 10 figure, submitted to ApJ
References in corpus (10)
- The morphology of HII regions during reionization
- Keeping the Universe ionised: Photo-heating and the clumping factor of the high-redshift intergalactic medium
- Radiative transfer simulations of cosmic reionization I: methodology and initial results
- Inhomogeneous recombinations during cosmic reionization
- Cosmic Reionization On Computers I. Design and Calibration of Simulations
- Cosmic Reionization On Computers II. Reionization History and Its Back Reaction on Early Galaxies
- Direct Numerical Simulation of Reionization II: Recombinations, Clumping Factors, and the Photon Budget for Reionization
- The visibility of Lyman Alpha Emitters: constraining reionization, ionizing photons and dust
- Recombination clumping factor during cosmic reionization
- Clumping factors of HII, HeII and HeIII
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