论文标题

电离气泡网络的持续拓扑。 II:进化与分类

Persistent topology of the reionization bubble network. II: Evolution & Classification

论文作者

Elbers, Willem, van de Weygaert, Rien

论文摘要

我们研究了在电离时期表征的电离和中性区域网络的拓扑。我们的分析使用了持久同源性的形式主义,该形式在拓扑特征的出生和死亡方面提供了对电离拓扑的高度直观和全面的描述。在电离气泡网络中,特征被确定为$ k $维孔,其丰度由$ k $ th betti编号给出:电离气泡的$β_0$,隧道的$β_1$,中性岛屿的$β_2$。使用半数字的电源模型,我们研究了对电离辐射源和水槽的依赖性。在所有拓扑特征中,我们发现隧道在电离期间占主导地位,并且它们的数量最容易观察,并且对感兴趣的天体物理参数(例如,气体分数和恒星形成所需的气体分数和光晕质量)最敏感。被视为相变,可以通过两个渗透簇的纠缠来解释隧道的重要性,以及当低维特征将较低的特征链接在一起时会出现较高维度的特征。我们还研究了气泡网络(气泡,隧道,岛屿)的形态成分与宇宙网的形态成分之间的关​​系(群集,丝,细丝,空隙),描述了两者的$ k $数特征之间的对应关系。最后,我们将形式主义应用于对21 cm信号的模拟观察。假设HERA II期有1000个观察时间,我们表明天体物理模型可以区分,并确认持续的同源性提供了功率谱以外的其他信息。

We study the topology of the network of ionized and neutral regions that characterized the intergalactic medium during the Epoch of Reionization. Our analysis uses the formalism of persistent homology, which offers a highly intuitive and comprehensive description of the ionization topology in terms of the births and deaths of topological features. Features are identified as $k$-dimensional holes in the ionization bubble network, whose abundance is given by the $k$th Betti number: $β_0$ for ionized bubbles, $β_1$ for tunnels, and $β_2$ for neutral islands. Using semi-numerical models of reionization, we investigate the dependence on the properties of sources and sinks of ionizing radiation. Of all topological features, we find that the tunnels dominate during reionization and that their number is easiest to observe and most sensitive to the astrophysical parameters of interest, such as the gas fraction and halo mass necessary for star formation. Seen as a phase transition, the importance of the tunnels can be explained by the entanglement of two percolating clusters and the fact that higher-dimensional features arise when lower-dimensional features link together. We also study the relation between the morphological components of the bubble network (bubbles, tunnels, islands) and those of the cosmic web (clusters, filaments, voids), describing a correspondence between the $k$-dimensional features of both. Finally, we apply the formalism to mock observations of the 21-cm signal. Assuming 1000 observation hours with HERA Phase II, we show that astrophysical models can be differentiated and confirm that persistent homology provides additional information beyond the power spectrum.

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