论文标题

有效的老板理论分析的一致性

Consistency of effective field theory analyses of the BOSS power spectrum

论文作者

Simon, Théo, Zhang, Pierre, Poulin, Vivian, Smith, Tristan L.

论文摘要

我们使用有效的大规模结构(EFTOFLSS)的单循环预测来评估$λ$ CDM的稳健性,从BOSS功率谱进行完整形状分析结果。公众的可能性是Pybird和Class-PT,尽管它们源自相同的Boss数据集和理论模型,但仅以$1σ$的水平达成了共识。我们对两个管道之间做出的各种分析选择进行了详尽的比较,并确定差异来自于EFT参数上的先验选择,称为“ West-Coast”(WC)(WC)和“ East-Coast”(EAST-COAST”(EC)先验,分别与Pybird和Class-PTS相关。特别是,由于后期是非高斯的,因此边缘化对EFT参数的投影影响将宇宙学参数的后平均值转移到wc以前的WC中最高$1σ$的最高$1σ$。我们量化了从Boss提取的最佳拟合宇宙学参数,因为这两个先前的选择在$ \ sim1σ$下是一致的。将前面的宽度加倍时,一致性提高到$ \ sim0.5σ$。尽管这表明当前的EFT分析会受到先前的影响,但我们表明,与CMB相结合或即将到来的大容量数据而获得的宇宙学结果对这些效果的敏感性较小。此外,我们研究了老板测量之间的差异。我们发现了考虑的所有预先构造的测量值($ <0.6σ$)的广泛协议,但是在傅立叶空间中,两个可用的老板后重建后的测量结果曾经与EFT完整形状分析相结合,导致差异Hubble参数$ h_0 $ h_0 $ h_0 $以$ \ sim0.9σ$。鉴于我们讨论的各种效果,我们认为使用Boss测量的聚类振幅$σ_8$与Planck $λ$ CDM推断出的统计张力并不是统计张力。

We assess the robustness of $Λ$CDM results from the full-shape analysis of BOSS power spectrum using the one-loop prediction of the Effective Field Theory of Large-Scale Structure (EFTofLSS). The public likelihoods PyBird and CLASS-PT lead to results in agreement only at the $1σ$ level, despite the fact that they are derived from the same BOSS dataset and theory model. We perform a thorough comparison of the various analyses choices made between the two pipelines, and identify that the differences come from the choice of prior on the EFT parameters, dubbed "West-coast" (WC) and "East-coast" (EC) prior, respectively associated to PyBird and CLASS-PT. In particular, because posteriors are non-Gaussian, projection effects from the marginalization over the EFT parameters shift the posterior mean of the cosmological parameters with respect to the best-fit up to $1σ$ in the WC prior and up to $2σ$ in the EC prior. We quantify that best-fit cosmological parameters extracted from BOSS given the two prior choices are consistent at $\sim 1σ$. The consistency improves to $\sim 0.5σ$ when doubling the prior widths. While this reveals that current EFT analyses are subject to prior effects, we show that cosmological results obtained in combination with CMB, or from forthcoming large-volume data, are less sensitive to those effects. In addition, we investigate differences between BOSS measurements. We find broad agreements across all pre-reconstructed measurements considered ($<0.6σ$), but the two available BOSS post-reconstructed measurements in Fourier space, once combined with the EFT full-shape analysis, lead to discrepant Hubble parameter $H_0$ at $\sim 0.9σ$. Given the various effects we discuss, we argue that the clustering amplitude $σ_8$ measured with BOSS is not in statistical tension with that inferred from Planck under $Λ$CDM.

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