论文标题
DESI模拟挑战:带有偏置分配方法的光环和星系目录
DESI Mock Challenge: Halo and galaxy catalogs with the bias assignment method
论文作者
论文摘要
我们提出了一种基于在田间水平上使用有效的偏置模型获得的暗光晕的分布,为大规模结构分析的模拟星系目录的构建提供了新的方法。我们的目标是生成能够生成许多宇宙学探针的准确协方差矩阵的模拟星系目录,这些探针有望在当前和即将进行的Galaxy Redshift调查中测量(例如,两点和三点统计)。我们使用偏见分配方法(BAM)使用学习算法使用一些详细的$ n $体仿真和基于Lagrangian扰动理论的近似重力求解器来模拟Halo分布的统计数据。使用光晕占用分布的特定模型,我们生成了带有预期数量密度和中央 - 卫星分数的发射线星系的星系模型,这是DESI实验的关键目标。 BAM在许多摘要统计数据中生成了模拟目录的精度,例如在真实和红移空间中的光环分布的两点和三点统计。特别是,模拟星系目录显示$ \ sim 3 \%-10 \%$ $在功率谱系中的精度至$ k \ sim 0.4 \,h^{ - 1} {\ rm mpc} $。我们显示,用BAM获得的两点统计和三点统计的协方差矩阵显示与参考模拟相似的结构。 BAM提供了一种有效的方法来生产具有准确的两点统计和三分统计的模拟光环目录,并能够生成具有几个宇宙学探针的精确协方差矩阵的各种多跟踪目录。我们讨论了对DESI和其他Galaxy-Redshift调查中模拟生产算法的未来发展。 (简略)
We present a novel approach to the construction of mock galaxy catalogues for large-scale structure analysis based on the distribution of dark matter halos obtained with effective bias models at the field level. We aim to produce mock galaxy catalogues capable of generating accurate covariance matrices for a number of cosmological probes that are expected to be measured in current and forthcoming galaxy redshift surveys (e.g. two- and three-point statistics). We use the bias assignment method (BAM) to model the statistics of halo distribution through a learning algorithm using a few detailed $N$-body simulations, and approximated gravity solvers based on Lagrangian perturbation theory. Using specific models of halo occupation distributions, we generate galaxy mocks with the expected number density and central-satellite fraction of emission-line galaxies, which are a key target of the DESI experiment. BAM generates mock catalogues with per cent accuracy in a number of summary statistics, such as the abundance, the two- and three-point statistics of halo distributions, both in real and redshift space. In particular, the mock galaxy catalogues display $\sim 3\%-10\%$ accuracy in the multipoles of the power spectrum up to scales of $k\sim 0.4\,h^{-1}{\rm Mpc}$. We show that covariance matrices of two- and three-point statistics obtained with BAM display a similar structure to the reference simulation. BAM offers an efficient way to produce mock halo catalogues with accurate two- and three-point statistics, and is able to generate a variety of multi-tracer catalogues with precise covariance matrices of several cosmological probes. We discuss future developments of the algorithm towards mock production in DESI and other galaxy-redshift surveys. (Abridged)