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首页> 外文期刊>The Astrophysical journal >EVOLUTION OF THE IONIZING RADIATION BACKGROUND AND STAR FORMATION IN THE AFTERMATH OF COSMOLOGICAL REIONIZATION
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EVOLUTION OF THE IONIZING RADIATION BACKGROUND AND STAR FORMATION IN THE AFTERMATH OF COSMOLOGICAL REIONIZATION

机译:宇宙电离后电离辐射本底和恒星形成的演变

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摘要

The temporal evolution of the ionizing UV background radiation field at high redshift provides a probe of the evolution of the early star formation rate. By comparing the observed levels of absorption in the highest redshift quasar spectra to the predictions of a hydrodynamic simulation, we determine the evolution of the photoionization rate (Γ) for neutral hydrogen in the intergalactic medium over the redshift range 4.9 approx< z approx< 6.1. After accounting for sampling variance, we infer a sharp increase in Γ from z approx= 6.1 to z approx= 5.8, probably implying reionization at this redshift. We find a decrease in Γ from z approx= 5.6 to 5.2 at 3 σ significance. This feature is a generic signature in the aftermath of reionization, entirely consistent with the cosmological reionization process being completed at z ~ 6.1. This generic feature is a result of a significant change in the star formation rate subsequent to the cosmological reionization. There is an abrupt rise of the temperature of the intergalactic medium due to photoheating when it is reionized. This translates to a correspondingly sudden jump in the Jeans mass and a dramatic suppression of gas accretion onto the most abundant (subgalactic) halos at the epochs of interest. The star formation rate suffers a temporary setback in the aftermath of reionization, resulting in a temporary decrease in the amplitude of the ionizing radiation field.
机译:高红移下电离UV背景辐射场的时间演化为早期恒星形成速率的演化提供了一个探针。通过将最高红移类星体光谱中观察到的吸收水平与流体动力学模拟的预测值进行比较,我们确定了红移范围内银河中间介质中中性氢的光电离速率(Γ)的演化4.9近似

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