论文标题
完成的SDSS-IV扩展Baryon振荡光谱调查:EBOSS发射线样品的N体模拟挑战
The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: N-body Mock Challenge for the eBOSS Emission Line Galaxy Sample
论文作者
论文摘要
可以在光谱调查靶向的星系的红移空间聚类中测量宇宙生长。准确预测星系聚类将需要了解星系物理学,这是一个非常严重且高度非线性的问题。红移空间失真(RSD)的近似模型采用扰动方法来解决宇宙中暗物质和星系的演变。 在本文中,我们着重于生活在中间质量光环中的EBOSS发射线星系(ELGS)。我们使用来自Multidark的光环和{\ sc ofter Rim}暗物质仅N-Body模拟创建一系列模拟目录。我们的模拟目录包括受到重型物理(例如组装偏置)的启发的各种效果以及卫星星系运动学,动力学和与暗物质颗粒偏离的统计的特征。 我们使用傅立叶空间中的TNS RSD模型和配置空间中的CLPT分析了这些模型。我们得出的结论是,这两个RSD模型在我们模拟的统计误差中提供了对红移空间失真的无偏测量。我们获得了$ 3.3 \%$,$ 1.8 \%$和$ 1.5 \%$的保守理论系统不确定性,分别用于TNS和CLPT型号。我们注意到,估计的理论系统误差是比EBOSS ELG样本的统计误差小的数量级,因此对于当前的EBOSS ELG分析而言,可以忽略不计。
Cosmological growth can be measured in the redshift space clustering of galaxies targeted by spectroscopic surveys. Accurate prediction of clustering of galaxies will require understanding galaxy physics which is a very hard and highly non-linear problem. Approximate models of redshift space distortion (RSD) take a perturbative approach to solve the evolution of dark matter and galaxies in the universe. In this paper we focus on eBOSS emission line galaxies (ELGs) which live in intermediate mass haloes. We create a series of mock catalogues using haloes from the Multidark and {\sc Outer Rim} dark matter only N-body simulations. Our mock catalogues include various effects inspired by baryonic physics such as assembly bias and the characteristics of satellite galaxies kinematics, dynamics and statistics deviating from dark matter particles. We analyse these mocks using the TNS RSD model in Fourier space and the CLPT in configuration space. We conclude that these two RSD models provide an unbiased measurement of redshift space distortion within the statistical error of our mocks. We obtain the conservative theoretical systematic uncertainty of $3.3\%$, $1.8\%$ and $1.5\%$ in $fσ_8$, $α_{\parallel}$ and $α_{\bot}$ respectively for the TNS and CLPT models. We note that the estimated theoretical systematic error is an order of magnitude smaller than the statistical error of the eBOSS ELG sample and hence are negligible for the purpose of the current eBOSS ELG analysis.