论文标题
HIR4:使用地平线运行的模拟中性氢全天空的宇宙学4
HIR4: cosmology from a simulated neutral hydrogen full sky using Horizon Run 4
论文作者
论文摘要
宇宙中性氢的分布将通过下一代射电望远镜和调查为宇宙的大规模结构提供新的窗口。通过相同频率的前景发射,通过21厘米线发射对该材料的观察将混淆。即使去除了这些前景之后,重建的地图也可能与原始宇宙学信号完全匹配,这将引入系统误差并偏移到测量的相关性中。在本文中,我们使用地平线运行4(HR4)宇宙学N体模拟模拟了中性氢的未来调查。我们从HR4 HARO目录生成HI强度图,并与全球天空模型的前景无线电发射图相结合,以在整个天空上创建准确的模拟。我们为700-800 MHz的频率范围模拟HI天空,与Tianlai探路者的灵敏度相匹配。我们测试了FastICA,PCA和对数多项式拟合前景切除方法的准确性,以恢复输入宇宙学角功率谱并测量参数。我们显示了调查噪声水平和梁大小对恢复的宇宙限制的影响。我们发现,尽管重建从大型宇宙学21cm分布中删除了功率,但我们可以为此纠正并恢复无噪声情况下的输入参数。但是,仅使用强度映射信息时,孔莱探路者的噪声和光束大小的影响可阻止宇宙学参数的准确恢复。
The distribution of cosmological neutral hydrogen will provide a new window into the large-scale structure of the Universe with the next generation of radio telescopes and surveys. The observation of this material, through 21cm line emission, will be confused by foreground emission in the same frequencies. Even after these foregrounds are removed, the reconstructed map may not exactly match the original cosmological signal, which will introduce systematic errors and offset into the measured correlations. In this paper, we simulate future surveys of neutral hydrogen using the Horizon Run 4 (HR4) cosmological N-body simulation. We generate HI intensity maps from the HR4 halo catalogue, and combine with foreground radio emission maps from the Global Sky Model, to create accurate simulations over the entire sky. We simulate the HI sky for the frequency range 700-800 MHz, matching the sensitivity of the Tianlai pathfinder. We test the accuracy of the fastICA, PCA and log-polynomial fitting foreground removal methods to recover the input cosmological angular power spectrum and measure the parameters. We show the effect of survey noise levels and beam sizes on the recovered the cosmological constraints. We find that while the reconstruction removes power from the cosmological 21cm distribution on large-scales, we can correct for this and recover the input parameters in the noise-free case. However, the effect of noise and beam size of the Tianlai pathfinder prevents accurate recovery of the cosmological parameters when using only intensity mapping information.