论文标题

星系功率谱对空间曲率和宇宙一致性采用

The galaxy power spectrum take on spatial curvature and cosmic concordance

论文作者

Vagnozzi, Sunny, Di Valentino, Eleonora, Gariazzo, Stefano, Melchiorri, Alessandro, Mena, Olga, Silk, Joseph

论文摘要

根据当前的观察,$λ$ CDM宇宙学模型的一致性一直是最近几个月激烈的辩论。 2018 Planck Cosmic微波背景(CMB)温度各向异性功率谱测量值以曲率参数$ω_k<0 $为有利于空间封闭的宇宙。如果将重子振荡(BAO)测量与Planck数据相结合以打破几何脱落性,则此偏好会消失,尽管由于假设一个弯曲的宇宙时,由于两个数据集之间存在强烈的张力,因此对这种组合的可靠性进行了质疑。在这里,我们从另一个角度来解决此问题,使用全形(FS)星系功率谱的测量结果,$ P(k)$,来自Baryon振荡光谱调查DR12 CMASS样本。通过将Planck数据与FS测量相结合,我们打破了几何脱落性并找到$ω__k= 0.0023 \ pm 0.0028 $。这将宇宙限制为在空间上平坦至次级精度,这与使用BAO测量获得的结果非常吻合。但是,与BAO一样,最佳拟合$χ^2 $的总体增加表明,在弯曲的宇宙的假设下,普朗克和$ p(k)$之间的紧张程度相似。尽管关于空间曲率的辩论和宇宙学数据集之间的一致性仍然开放,但我们的结果为问题提供了新的观点,突出了FS测量值在Precision宇宙学时代的关键作用。

The concordance of the $Λ$CDM cosmological model in light of current observations has been the subject of an intense debate in recent months. The 2018 Planck Cosmic Microwave Background (CMB) temperature anisotropy power spectrum measurements appear at face value to favour a spatially closed Universe with curvature parameter $Ω_K<0$. This preference disappears if Baryon Acoustic Oscillation (BAO) measurements are combined with Planck data to break the geometrical degeneracy, although the reliability of this combination has been questioned due to the strong tension present between the two datasets when assuming a curved Universe. Here, we approach this issue from yet another point of view, using measurements of the full-shape (FS) galaxy power spectrum, $P(k)$, from the Baryon Oscillation Spectroscopic Survey DR12 CMASS sample. By combining Planck data with FS measurements, we break the geometrical degeneracy and find $Ω_K=0.0023 \pm 0.0028$. This constrains the Universe to be spatially flat to sub-percent precision, in excellent agreement with results obtained using BAO measurements. However, as with BAO, the overall increase in the best-fit $χ^2$ suggests a similar level of tension between Planck and $P(k)$ under the assumption of a curved Universe. While the debate on spatial curvature and the concordance between cosmological datasets remains open, our results provide new perspectives on the issue, highlighting the crucial role of FS measurements in the era of precision cosmology.

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