论文标题

有偏见的示踪剂作为探测超过$λ$ CDM宇宙学的探测

Biased tracers as a probe of beyond-$Λ$CDM cosmologies

论文作者

Hassani, Farbod, Adamek, Julian, Durrer, Ruth, Kunz, Martin

论文摘要

与$λ$ CDM基线相比,宇宙学模型超过$λ$ CDM,例如具有大量中微子或重力修饰的宇宙模型,通常在物质功率谱中显示出特征性的变化(与规模有关的抑制或增强)。因此,人们普遍认为,可以通过在大规模结构的聚类统计中搜索此类特征来获得对这些模型的约束。但是,当在分析中使用偏见的物质示踪剂时,偏见也取决于宇宙学的事实使情况变得复杂。在这里,我们调查了示踪剂的选择如何影响两个超过$λ$ CDM宇宙的示例的签名:大规模的中微子和聚类的暗能量($ k $ - essence)。我们研究了来自大型$ n $ body模拟的光环目录的单极,四极和十六进制的符号,并认为在大多数情况下,基于本地属性等本地属性会导致信号损失。相反,只有在固定偏置下完成示踪剂的选择时才能恢复完整信号。这强调了需要准确地建模或测量偏差参数,以便在宇宙学模型上获得有意义的限制。

Cosmological models beyond $Λ$CDM, like those featuring massive neutrinos or modifications of gravity, often display a characteristic change (scale-dependent suppression or enhancement) in the matter power spectrum when compared to a $Λ$CDM baseline. It is therefore a widely held view that constraints on those models can be obtained by searching for such features in the clustering statistics of large-scale structure. However, when using biased tracers of matter in the analysis, the situation is complicated by the fact that the bias also depends on cosmology. Here we investigate how the selection of tracers affects the observed signatures for two examples of beyond-$Λ$CDM cosmologies: massive neutrinos and clustering dark energy ($k$-essence). We study the signatures in the monopole, quadrupole, and hexadecapole of the redshift-space power spectra for halo catalogues from large $N$-body simulations and argue that a fixed selection criterion based on local attributes like tracer mass leads to a near loss of signal in most cases. Instead, the full signal is recovered only if the selection of tracers is done at fixed bias. This emphasises the need to model or measure the bias parameters accurately in order to get meaningful constraints on the cosmological model.

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