论文标题
宇宙黎明期间银河系中的白乳层富集的程度
The extent of intergalactic metal enrichment from galactic winds during the Cosmic Dawn
论文作者
论文摘要
在宇宙黎明期间驱动银河发展的关键过程之一是超新星反馈。这可能有助于调节星系内的恒星形成,但它也可以驱动影响大规模呈乳层面培养基的风。在这里,我们提出了超新星驱动的银河风的简单半分析模型,并探索了银河发展不同阶段对高红速(z> 6)宇宙中宇宙金属富集的贡献。我们表明,在Z〜6-8处校准的模型在Z〜6时的填充因子约为1%,在Z〜12时具有约1%的填充因子,不同的星形形成处方可提供数量级的不确定性。尽管风填充的空间很少,但这些场景预测,在Z> 5时,类星体光谱中金属线吸收器的丰度上限舒适到当前观察到的范围舒适。我们还考虑通过Minihalos中的流行III星形成驱动的风浓缩。我们发现,至少就总富集体积而言,这些可能在z> 10处主导z> 10的总填充因子,甚至可以与z〜6正常星系的风竞争。但是这些区域的总体金属度要低得多,因为每个区域都是由一小颗星形成产生的。最后,我们表明,在Z> 6处这些超新星驱动的风的康普顿冷却对宇宙微波背景只有很小的影响。
One of the key processes driving galaxy evolution during the Cosmic Dawn is supernova feedback. This likely helps regulate star formation inside of galaxies, but it can also drive winds that influence the large-scale intergalactic medium. Here, we present a simple semi-analytic model of supernova-driven galactic winds and explore the contributions of different phases of galaxy evolution to cosmic metal enrichment in the high-redshift (z > 6) Universe. We show that models calibrated to the observed galaxy luminosity function at z~6-8 have filling factors ~1% at z~6 and ~0.1% at z~12, with different star formation prescriptions providing about an order of magnitude uncertainty. Despite the small fraction of space filled by winds, these scenarios predict an upper limit to the abundance of metal-line absorbers in quasar spectra at z>5 which is comfortably above that currently observed. We also consider enrichment through winds driven by Pop III star formation in minihalos. We find that these can dominate the total filling factor at z>10 and even compete with winds from normal galaxies at z~6, at least in terms of the total enriched volume. But these regions have much lower overall metallicities, because each one is generated by a small burst of star formation. Finally, we show that Compton cooling of these supernova-driven winds at z>6 has only a small effect on the cosmic microwave background.