论文标题
通过HI强度映射检测功率谱转换
Detecting the power spectrum turnover with HI intensity mapping
论文作者
论文摘要
探路者强度映射(IM)调查的目标将是检测中性氢(HI)功率谱的特征,这些功能谱是宇宙学信号的最终证据。在HI IM自动相关的预期量表上观察此类特征(系统贡献尚不确定)将提供更具说服力的宇宙学检测。我们演示了如何使用HI IM检测到的营业额,即在超大尺度下的功率谱的峰。我们发现,使用UHF波段的Meerkat 4,000 $ \,{\ rm deg}^2 $调查能够相对于无型失误的无效模型功率频谱的$3.1σ$检测。这应该超过光学和近红外的当前星系调查能力的功能。检测意义在Meerkat的L波段中降至$ {\ sim}1σ$,但可以使用SKAO达到$ {\ sim}13σ$,它应该很容易地超过未来阶段IV光谱型光谱银河系的约束。我们还提出了一种新的独立于模型的方法,以限制精确的周转量表($ k_0 $),而我们对UHF波段模拟数据的测试的精度为10%。使用完整的SKAO时,这将提高到2.4%。我们证明了结果如何通过使用传输功能来稳健到前景污染,即使在其构造中假定了不正确的宇宙学。鉴于营业额与物质辐射平等时的地平线量表有关,因此$ k_0 $的足够精确的约束提出了一种新颖的宇宙学探针的可能性。因此,我们提出了一种使用HI功率频谱中的离职位置,用于构建基于标准的距离的距离测量,独立于声音范围。
A goal for pathfinder intensity mapping (IM) surveys will be detecting features in the neutral hydrogen (HI) power spectrum, which serve as conclusive evidence of cosmological signals. Observing such features at the expected scales in HI IM auto-correlations, where contribution from systematics is uncertain, will provide a more convincing cosmological detection. We demonstrate how the turnover, i.e. the peak of the power spectrum at ultra-large scales, can be detected with HI IM. We find that a MeerKAT 4,000$\,{\rm deg}^2$ survey using the UHF-band is capable of a $3.1σ$ detection of the turnover, relative to a null model power spectrum with no turnover. This should exceed what is capable by current galaxy surveys in optical and near-infrared. The detection significance falls to ${\sim}1σ$ in MeerKAT's L-band but can reach ${\sim}13σ$ with the SKAO, which should easily surpass the constraints from future Stage-IV-like spectroscopic galaxy surveys. We also propose a new model-independent methodology for constraining the precise turnover scale ($k_0$) and our tests on UHF-band simulated data achieved a precision of 10%. This improved to 2.4% when using the full SKAO. We demonstrate how the results are robust to foreground contamination by using transfer functions, even when an incorrect cosmology has been assumed in their construction. Given that the turnover is related to the horizon scale at matter-radiation equality, a sufficiently precise constraint of $k_0$ presents the possibility for a novel probe of cosmology. We therefore present a potential methodology for constructing a standard-ruler-based distance measurement, independent of the sound horizon, using the turnover location in the HI power spectrum.