论文标题
通过IGM层析成像和Subaru PFS,TMT/ELT和JWST探测反馈
Probing Feedback via IGM tomography and Ly$α$ forest with Subaru PFS, TMT/ELT, and JWST
论文作者
论文摘要
为了准备Subaru Prime Focus Spectrograph(PFS)调查和其他大型未来望远镜(例如TMT/ELT/GMT)的IGM断层扫描研究,我们使用Gadget3-Osaka-Osaka-Osaka粒子平滑粒子水力学的模拟方法介绍了有关LY $α$ Forest统计的试点研究的结果。我们的仿真包括恒星形成和超新星反馈的模型,该模型可以在环境和乳清层间培养基中的星系,中性氢(HI)和金属之间进行更逼真的互相关研究。我们从模拟中创建一个以$ z = 2-3 $的灯光数据集,并生成模拟$ ly $α$森林数据。作为第一步,在本文中,我们专注于HI和星系的分布,并在1D Flux PDF,1D功率谱,通量对比度与影响参数,HI $ - $ - $ - $ GALAXY互相关上进行统计结果。我们的结果显示了与当前观察数据的总体一致性,并且在小尺度上存在一些有趣的差异,这是由于反馈效应或不同的观察条件所致。我们的模拟显示出更强的HI吸收,而与星系的横向距离降低。我们发现,具有$ M_ \ star \ ge 10^{10} \,m_ \ odot $的巨大星系对通量对比度信号有很大贡献,并且具有$ M_ \ star \ star \ sim 10^8-10^8-10^{10}} {10}} \,m_ \ odot $倾向于散热的群体的较低质量星系。在很大的尺度上,平均通量对比度平稳地连接到IGM级别,并支持Coostance $λ$ Cold Dark Matter模型。我们还发现,HI吸收朝向原始群集的中心。
In preparation for the IGM tomography study by Subaru Prime Focus Spectrograph (PFS) survey and other large future telescopes such as TMT/ELT/GMT, we present the results of our pilot study on Ly$α$ forest and IGM tomography statistics using the GADGET3-OSAKA cosmological smoothed particle hydrodynamical simulation. Our simulation includes models for star formation and supernova feedback, which enables more realistic cross-correlation studies between galaxies, neutral hydrogen (HI) and metals in circumgalactic and intergalactic medium. We create a light-cone data set at $z=2-3$ from our simulations and generate mock Ly$α$ forest data. As a first step, in this paper, we focus on the distribution of HI and galaxies, and present statistical results on 1D flux PDF, 1D power spectrum, flux contrast vs. impact parameter, HI$-$galaxy cross-correlations. Our results show overall agreement with current observational data, with some interesting discrepancies on small scales that are due to either feedback effects or varying observational conditions. Our simulation shows stronger HI absorption with decreasing transverse distance from galaxies. We find that the massive galaxies with $M_\star \ge 10^{10}\,M_\odot$ contribute strongly to the flux contrast signal, and that the lower-mass galaxies with $M_\star \sim 10^8-10^{10}\,M_\odot$ tend to dilute the flux contrast signal from massive galaxies. On large scales, the average flux contrast smoothly connects to the IGM level, supporting the concordance $Λ$ cold dark matter model. We also find an increase in the HI absorption toward the center of a protocluster.