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首页> 外文期刊>The Astrophysical journal >COSMIC REIONIZATION ON COMPUTERS. II. REIONIZATION HISTORY AND ITS BACK-REACTION ON EARLY GALAXIES
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COSMIC REIONIZATION ON COMPUTERS. II. REIONIZATION HISTORY AND ITS BACK-REACTION ON EARLY GALAXIES

机译:计算机上的宇宙离子化。二。电离历史及其对早期星系的反作用

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We compare the results from several sets of cosmological simulations of cosmic reionization, produced under the Cosmic Reionization On Computers project, with existing observational data on the high-redshift Lyα forest and the abundance of Lyα emitters. We find good consistency with the observational measurements and previous simulation work. By virtue of having several independent realizations for each set of numerical parameters, we are able to explore the effect of cosmic variance on observable quantities. One unexpected conclusion we are forced into is that cosmic variance is unusually large at z 6, with both our simulations and, most likely, observational measurements still not fully converged for even such basic quantities as the average Gunn-Peterson optical depth or the volume-weighted neutral fraction. We also find that reionization has little effect on the early galaxies or on global cosmic star formation history, because galaxies whose gas content is affected by photoionization contain no molecular (i.e., star-forming) gas in the first place. In particular, measurements of the faint end of the galaxy luminosity function by the James Webb Space Telescope are unlikely to provide a useful constraint on reionization.
机译:我们将计算机宇宙离子化项目下产生的几组宇宙离子化宇宙学模拟结果与高红移Lyα森林和Lyα发射体丰度的现有观测数据进行了比较。我们发现与观测测量和先前的模拟工作具有很好的一致性。通过为每组数值参数提供几个独立的实现,我们能够探索宇宙方差对可观测量的影响。我们被迫得出一个出乎意料的结论,即宇宙的方差在z> 6时异常大,我们的模拟以及最有可能的观测结果即使对于平均Gunn-Peterson光学深度或体积这样的基本量,也仍未完全收敛。加权中性分数。我们还发现,电离对早期星系或全球宇宙恒星形成历史影响很小,因为气体含量受光电离作用影响的星系首先不包含分子(即恒星形成)气体。特别是,詹姆斯·韦伯太空望远镜对银河系光度函数微弱末端的测量不太可能对电离提供有用的约束。

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