论文标题

当前数据与$λ$ CDM宇宙学模型中平坦的空间超曲面一致,但比模型预测的更倾向于镜头

Current data are consistent with flat spatial hypersurfaces in the $Λ$CDM cosmological model but favor more lensing than the model predicts

论文作者

Perez, Javier de Cruz, Park, Chan-Gyung, Ratra, Bharat

论文摘要

我们研究了三对倾斜的$λ$ CDM宇宙学模型的性能,两对允许使用CMB温度和极化功率谱数据(P18)的非灯空空间超曲面,Planck,p18镜头(镜头)和非CMB数据(非CMB)(非CMB)。对于六个模型,我们测量宇宙学参数,并研究这些模型的数据集是否相互一致。这些模型中有一半允许镜头一致性参数$ a_l $成为附加的免费参数,而其他三个则具有$ a_l = 1 $。倾斜的空间灯塔模型假定通常的原始空间不均匀性功率谱。倾斜的非平板模型假设Planck Group分析中使用的原始功率谱[Planck $ P(Q)$]或最近计算的功率谱[New $ P(Q)$]。在具有$ a_l = 1 $的倾斜非平局模型中,我们发现P18数据和非CMB数据宇宙学参数约束之间的差异足够大,可以排除Planck $ P(Q)$模型在3 $σ$中,但没有新的$ P(Q)$模型。虽然当P18+非CMB数据共同分析证据以支持非静电超曲面的证据时,p18数据和非CMB数据都均分别倾向于封闭的几何形状。当允许$ A_L $变化时,P18数据和非CMB数据宇宙学限制之间的差异消退。从最限制的p18+镜头+非CMB数据组合中,我们获得了几乎与模型无关的约束,发现$ a_l> 1 $选项比$ω_k_k<0 $ one优于$ a_l $ parameter,对于所有型号而言,$ \ sim \ sim sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim \ sim。根据偏差信息标准,在p18+镜头+非CMB分析中,变化的$ a_l $选项即将被强烈偏爱$ a_l = 1 $ one,这可能表明标准倾斜的flat $λ$ cdm型号(删节的摘要)。

We study the performance of three pairs of tilted $Λ$CDM cosmological models, two pairs allowing for non-flat spatial hypersurfaces with CMB temperature and polarization power spectrum data (P18) from Planck, P18 lensing (lensing), and non-CMB data (non-CMB). For the six models, we measure cosmological parameters and study whether or not pairs of the data sets are mutually consistent in these models. Half of these models allow the lensing consistency parameter $A_L$ to be an additional free parameter, while the other three have $A_L = 1$. The tilted spatially-flat models assume the usual primordial spatial inhomogeneity power spectrum. The tilted non-flat models assume either the primordial power spectrum used in the Planck group analyses [Planck $P(q)$] or a recently computed power spectrum [new $P(q)$]. In the tilted non-flat models with $A_L=1$ we find differences between P18 data and non-CMB data cosmological parameter constraints, which are large enough to rule out the Planck $P(q)$ model at 3$σ$ but not the new $P(q)$ model. While both P18 data and non-CMB data separately favor a closed geometry when P18+non-CMB data are jointly analyzed the evidence in favor of non-flat hypersurfaces subsides. Differences between P18 data and non-CMB data cosmological constraints subside when $A_L$ is allowed to vary. From the most restrictive P18+lensing+non-CMB data combination we get almost model-independent constraints and find that the $A_L>1$ option is preferred over the $Ω_k<0$ one, with the $A_L$ parameter, for all models, being larger than unity by $\sim 2.5σ$. According to the deviance information criterion, in the P18+lensing+non-CMB analysis, the varying $A_L$ option is on the verge of being strongly favored over the $A_L=1$ one, which could indicate a problem for the standard tilted flat $Λ$CDM model (Abridged abstract).

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