论文标题
在红移0.07和1.0之间的宇宙扩张和结构增长率的测量
Measurements of cosmic expansion and growth rate of structure from voids in the Sloan Digital Sky Survey between redshift 0.07 and 1.0
论文作者
论文摘要
我们介绍了来自Sloan数字天空调查主要星系样品(MGS)的数据中星系和宇宙空隙的各向异性互相关的测量值,Baryon振荡光谱调查(BOSS)并扩展了Boss(Eboss)亮度红色银河系数据,来自Sdss Data Replose 7,12和16和16,$ 0. $ 0。就像我们先前分析这些数据子集中的空隙的工作一样,我们在void-发现之前使用了用于星系数据的重建方法,以便在构造空隙样品时删除选择偏见。我们报告了与结构增长的互相关的多个多极矩的结果,$fσ_8(z)$以及比率$ d_ \ mathrm {m}(z)/d_ \ mathrm {h}(h}(z)$ compuling angular Diameter距离到六个redshift Bins。对于$ d_ \ mathrm {m}/d_ \ mathrm {h} $,我们能够达到比从同一数据集中的巴属声学振荡(BAO)和星系群集的分析获得的明显更高的精度。我们的增长率测量值较低,但仍可与星系聚类结果相提并论。对于这两个数量,结果与$λ$ CDM型号的期望非常吻合。假设一个平坦的宇宙,我们的结果对应于物质密度参数$ω__\ MATHRM {M} = 0.337^{+0.026} _ { - 0.029} $。对于更通用的模型,获得的退化方向与其他宇宙学探针的脱落方向是一致的,并且是互补的。这些结果巩固了空隙 - 摩尔克斯互相关测量,作为现代观察宇宙学的支柱。
We present measurements of the anisotropic cross-correlation of galaxies and cosmic voids in data from the Sloan Digital Sky Survey Main Galaxy Sample (MGS), Baryon Oscillation Spectroscopic Survey (BOSS) and extended BOSS (eBOSS) luminous red galaxy catalogues from SDSS Data Releases 7, 12 and 16, covering the redshift range $0.07<z<1.0$. As in our previous work analysing voids in subsets of these data, we use a reconstruction method applied to the galaxy data before void-finding in order to remove selection biases when constructing the void samples. We report results of a joint fit to the multipole moments of the measured cross-correlation for the growth rate of structure, $fσ_8(z)$, and the ratio $D_\mathrm{M}(z)/D_\mathrm{H}(z)$ of the comoving angular diameter distance to the Hubble distance, in six redshift bins. For $D_\mathrm{M}/D_\mathrm{H}$, we are able to achieve a significantly higher precision than that obtained from analyses of the baryon acoustic oscillations (BAO) and galaxy clustering in the same datasets. Our growth rate measurements are of lower precision but still comparable with galaxy clustering results. For both quantities, the results agree well with the expectations for a $Λ$CDM model. Assuming a flat Universe, our results correspond to a measurement of the matter density parameter $Ω_\mathrm{m}=0.337^{+0.026}_{-0.029}$. For more general models the degeneracy directions obtained are consistent with and complementary to those from other cosmological probes. These results consolidate void-galaxy cross-correlation measurements as a pillar of modern observational cosmology.