论文标题

完成的SDSS-IV扩展BARYON振荡光谱调查:从各向异性聚类分析的结构测量速率在构型聚类分析中,在红移0.6和1.1之间的发射线样品中

The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: Growth rate of structure measurement from anisotropic clustering analysis in configuration space between redshift 0.6 and 1.1 for the Emission Line Galaxy sample

论文作者

Tamone, Amélie, Raichoor, Anand, Zhao, Cheng, de Mattia, Arnaud, Gorgoni, Claudio, Burtin, Etienne, Ruhlmann-Kleider, Vanina, Ross, Ashley J., Alam, Shadab, Percival, Will J., Avila, Santiago, Chapman, Michael J., Chuang, Chia-Hsun, Comparat, Johan, Dawson, Kyle S., de la Torre, Sylvain, Bourboux, Hélion du Mas des, Escoffier, Stephanie, Gonzalez-Perez, Violeta, Hou, Jiamin, Kneib, Jean-Paul, Mohammad, Faizan G., Mueller, Eva-Maria, Paviot, Romain, Rossi, Graziano, Schneider, Donald P., Wang, Yuting, Zhao, Gong-Bo

论文摘要

我们介绍了Sloan Digital Sky Survey IV(SDSS-IV)扩展的BARYON振荡光谱调查(EBOSS)数据释放的排放线星系(ELG)各向异性聚类(ELGS)。我们的样本由173,736 elg组成,覆盖了1170度的面积$^2 $,超过了红移范围$ 0.6 \ leq Z \ leq 1.1 $。除了高斯流式红移空间扭曲之外,我们还使用卷积的拉格朗日扰动理论来对各向异性相关函数的Legendre Multiles进行建模。我们表明,EBOSS ELG相关函数测量受径向积分约束的贡献的影响,该径向积分约束需要进行建模,以避免偏见结果。为了减轻未知角系统学的影响,我们采用了修改的相关函数估计器,该函数估计器取消群集的角模式。在有效的红移时,$ z {\ rm eff} = 0.85 $,包括统计和系统不确定性,我们测量结构的线性增长$fσ_8(z _ {\ rm eff})= 0.35 \ pm0.10 $ 19.1^{+1.9} _ { - 2.1} $和comoving Angular直径距离$ d_m(z _ {\ rm eff})/r _ {\ rm drag} = 19.9 \ pm1.0 $。这些结果与傅立叶空间分析一致,导致共识值:$fσ_8(z _ {\ rm eff})= 0.315 \ pm0.095 $,$ d_h(z _ {\ rm eff})/rm _ {\ rm drag} $ d_m(z _ {\ rm eff})/r _ {\ rm drag} = 19.5 \ pm1.0 $,与$λ$ CDM模型预测具有Planck参数。

We present the anisotropic clustering of emission line galaxies (ELGs) from the Sloan Digital Sky Survey IV (SDSS-IV) extended Baryon Oscillation Spectroscopic Survey (eBOSS) Data Release 16 (DR16). Our sample is composed of 173,736 ELGs covering an area of 1170 deg$^2$ over the redshift range $0.6 \leq z \leq 1.1$. We use the Convolution Lagrangian Perturbation Theory in addition to the Gaussian Streaming Redshift-Space Distortions to model the Legendre multipoles of the anisotropic correlation function. We show that the eBOSS ELG correlation function measurement is affected by the contribution of a radial integral constraint that needs to be modelled to avoid biased results. To mitigate the effect from unknown angular systematics, we adopt a modified correlation function estimator that cancels out the angular modes from the clustering. At the effective redshift, $z_{\rm eff}=0.85$, including statistical and systematical uncertainties, we measure the linear growth rate of structure $fσ_8(z_{\rm eff}) = 0.35\pm0.10$, the Hubble distance $D_H(z_{\rm eff})/r_{\rm drag} = 19.1^{+1.9}_{-2.1}$ and the comoving angular diameter distance $D_M(z_{\rm eff})/r_{\rm drag} = 19.9\pm1.0$. These results are in agreement with the Fourier space analysis, leading to consensus values of: $fσ_8(z_{\rm eff}) = 0.315\pm0.095$, $D_H(z_{\rm eff})/r_{\rm drag} = 19.6^{+2.2}_{-2.1}$ and $D_M(z_{\rm eff})/r_{\rm drag} = 19.5\pm1.0$, consistent with $Λ$CDM model predictions with Planck parameters.

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