论文标题

标记的功率谱测量什么?扰动理论的见解

What does the Marked Power Spectrum Measure? Insights from Perturbation Theory

论文作者

Philcox, Oliver H. E., Massara, Elena, Spergel, David N.

论文摘要

与常规功率谱相比,标记的功率谱能够对宇宙学参数(尤其是中微子质量)的更严格的约束。除传统统计数据外,它包含哪些新信息?通过开发扰动模型,我们发现标记在非高斯之间诱导了显着的耦合,而非高斯,通常在小尺度和大尺度上发现,从而导致其他信息内容。该模型是在单环扰动理论的上下文中得出的,并通过与各种标记参数的$ n $ body模拟进行了验证。在适度的红移,包括大规模中微子宇宙学,该理论与模拟非常吻合。非线性引力对大型光谱的重要性使建模复杂化,因为该理论在低$ z $时没有明确定义的收敛半径。通过类似的方法可以扩展到较高的扰动顺序和偏置示踪剂,后者的简单模型显示出有希望的结果。对于小型平滑量表,该理论在红移零上变得不扰动,具有高阶术语的重要贡献:在实现该工具的全部功能之前,需要研究这些尺寸。

The marked power spectrum is capable of placing far tighter constraints on cosmological parameters (particularly the neutrino mass) than the conventional power spectrum. What new information does it contain beyond conventional statistics? Through the development of a perturbative model, we find that the mark induces a significant coupling between non-Gaussianities, which are usually found on small scales, and large scales, leading to the additional information content. The model is derived in the context of one-loop perturbation theory and validated by comparison to $N$-body simulations across a variety of mark parameters. At moderate redshifts, including for massive neutrino cosmologies, the theory is in good agreement with the simulations. The importance of non-linear gravitational effects on the large-scale spectra complicates the modeling as there is no well-defined convergence radius of the theory at low $z$. Extension to higher perturbative order and biased tracers is possible via a similar approach, and a simple model of the latter is shown to yield promising results. The theory becomes non-perturbative at redshift zero for small smoothing scales, with important contributions from higher-order terms: these will need to be studied before the full power of this tool can be realized.

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