论文标题
破坏增长退化的宇宙学限制的改善
Improvements in cosmological constraints from breaking growth degeneracy
论文作者
论文摘要
大规模结构增长的关键探针是其费率$ f $和振幅$σ_8$。星系功率谱中的红移空间变形使我们只能测量组合$fσ_8$,可用于约束标准宇宙学模型或替代方案。通过使用Galaxy-Galaxy镜头互相关光谱或Galaxy Biseptrum的测量值,可以从同一星系样品中打破$Fσ_8$变性并获得$ F $和$σ_8$的单独估计。当前,只有少数这样的单独测量值,但即使这也可以改善对宇宙学模型的限制。我们探讨了将来有更大,更精确的此类测量样本如何限制进一步的宇宙学模型。我们考虑将来可以通过$ f $和$ f $和$σ_8$的$ \ sim 1 \%$约束来实现的目标,与组合$fσ_8$相似。对于$λ$ CDM的六个宇宙学参数,我们发现$ \ sim \! 5 $ - $ 50 \%$的约束。对于Horndeski类中修改的重力模型,这些标准参数的改进为$ \ sim \! 0 $ - $ 15 \%$。但是,中微子质量之和的精度提高了65 \%,背景和扰动Horndeski参数的精度显着提高。
The key probes of the growth of large-scale structure are its rate $f$ and amplitude $σ_8$. Redshift space distortions in the galaxy power spectrum allow us to measure only the combination $fσ_8$, which can be used to constrain the standard cosmological model or alternatives. By using measurements of the galaxy-galaxy lensing cross-correlation spectrum or of the galaxy bispectrum, it is possible to break the $fσ_8$ degeneracy and obtain separate estimates of $f$ and $σ_8$ from the same galaxy sample. Currently there are only a handful of such separate measurements, but even this allows for improved constraints on cosmological models. We explore how having a larger and more precise sample of such measurements in the future could constrain further cosmological models. We consider what can be achieved by a future nominal sample that delivers a $\sim 1\%$ constraint on $f$ and $σ_8$ separately, compared to the case with a similar precision on the combination $fσ_8$. For the six cosmological parameters of $Λ$CDM, we find improvements of $\sim\! 5$--$50\%$ on their constraints. For modified gravity models in the Horndeski class, the improvements on these standard parameters are $\sim\! 0$--$15\%$. However, the precision on the sum of neutrino masses improves by 65\% and there is a significant increase in the precision on the background and perturbation Horndeski parameters.