论文标题

完成的SDSS-IV扩展Baryon振荡光谱调查:用于宇宙学分析的大规模结构目录

The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: Large-scale Structure Catalogs for Cosmological Analysis

论文作者

Ross, Ashley J., Bautista, Julian, Tojeiro, Rita, Alam, Shadab, Bailey, Stephen, Burtin, Etienne, Comparat, Johan, Dawson, Kyle S., de Mattia, Arnaud, Bourboux, Hélion du Mas des, Gil-Marín, Héctor, Hou, Jiamin, Kong, Hui, Lyke, Brad W., Mohammad, Faizan G., Moustakas, John, Mueller, Eva-Maria, Myers, Adam D., Percival, Will J., Raichoor, Anand, Rezaie, Mehdi, Seo, Hee-Jong, Smith, Alex, Tinker, Jeremy L., Zarrouk, Pauline, Zhao, Cheng, Zhao, Gong-Bo, Bizyaev, Dmitry, Brinkmann, Jonathan, Brownstein, Joel R., Rosell, Aurelio Carnero, Chabanier, Solène, Choi, Peter D., Chuang, Chia-Hsun, Cruz-Gonzalez, Irene, de la Macorra, Axel, de la Torre, Sylvain, Escoffier, Stephanie, Fromenteau, Sebastien, Higley, Alexandra, Jullo, Eric, Kneib, Jean-Paul, McLane, Jacob N., Muñoz-Gutiérrez, Andrea, Neveux, Richard, Newman, Jeffrey A., Nitschelm, Christian, Palanque-Delabrouille, Nathalie, Paviot, Romain, Pullen, Anthony R., Rossi, Graziano, Ruhlmann-Kleider, Vanina, Schneider, Donald P., Magaña, Mariana Vargas, Vivek, M., Zhang, Yucheng

论文摘要

我们介绍了完整的扩展Baryon振荡光谱调查(EBOSS)的大规模结构目录。这些目录源自Sloan Digital Sky Survey(SDSS)-IV数据版本16(DR16),提供了数据样本,校正了观察性系统学,并随机位置采样了调查选择功能。结合在一起,它们允许大规模的聚类测量值适合测试宇宙学模型。我们描述了用于创建EBOSS DR16发光红色星系(LRG)和类星体样品的这些目录的方法。类星体目录包含343,708个红移,$ 0.8 <z <z <2.2 $超过4,808 \,deg $^2 $。我们结合了174,816 Eboss LRG红移,超过4,242 \,DEG $^2 $在红移间隔中$ 0.6 <z <z <1.0 $,SDSS-III BOSS LRGS在相同的红移范围内,以产生377,458 Galaxy Redshifts的组合样品,分别超过9,49,493 $^2 $^2 $,改进的估计红移算法允许98%的LRG观测结果成功进行红移,灾难性失败不到1%($Δz> 1000 $ $ $ $ {\ rm km〜s}}^{ - 1} $)。对于类星体来说,这些费率为95%和2%($ΔZ> 3000 $ $ {\ rm km〜s}}^{ - 1} $)。我们将样品数量密度与成像和光谱数据的性质之间的趋势进行校正。例如,Quasar目录获得了$χ^2 $/dof $ = 776/10 $,用于对校正之前的成像深度进行零测试和$χ^2 $/dof $ = 6/8 $之后。这些目录加上仔细考虑其在此处找到的构造的细节,允许伴侣论文呈现宇宙学结果,并从观察性系统的不确定性中造成可忽略的影响。

We present large-scale structure catalogs from the completed extended Baryon Oscillation Spectroscopic Survey (eBOSS). Derived from Sloan Digital Sky Survey (SDSS) -IV Data Release 16 (DR16), these catalogs provide the data samples, corrected for observational systematics, and random positions sampling the survey selection function. Combined, they allow large-scale clustering measurements suitable for testing cosmological models. We describe the methods used to create these catalogs for the eBOSS DR16 Luminous Red Galaxy (LRG) and Quasar samples. The quasar catalog contains 343,708 redshifts with $0.8 < z < 2.2$ over 4,808\,deg$^2$. We combine 174,816 eBOSS LRG redshifts over 4,242\,deg$^2$ in the redshift interval $0.6 < z < 1.0$ with SDSS-III BOSS LRGs in the same redshift range to produce a combined sample of 377,458 galaxy redshifts distributed over 9,493\,deg$^2$. Improved algorithms for estimating redshifts allow that 98 per cent of LRG observations result in a successful redshift, with less than one per cent catastrophic failures ($Δz > 1000$ ${\rm km~s}^{-1}$). For quasars, these rates are 95 and 2 per cent (with $Δz > 3000$ ${\rm km~s}^{-1}$). We apply corrections for trends between the number densities of our samples and the properties of the imaging and spectroscopic data. For example, the quasar catalog obtains a $χ^2$/DoF$= 776/10$ for a null test against imaging depth before corrections and a $χ^2$/DoF$=6/8$ after. The catalogs, combined with careful consideration of the details of their construction found here-in, allow companion papers to present cosmological results with negligible impact from observational systematic uncertainties.

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