论文标题
黑暗能源调查3年结果:在联合星系聚类和星系 - 盖镜头分析中优化镜头样品
Dark Energy Survey Year 3 Results: Optimizing the Lens Sample in Combined Galaxy Clustering and Galaxy-Galaxy Lensing Analysis
论文作者
论文摘要
我们通过使用来自Dark Energy Survey(DES)3年数据的信息来优化星系聚类和星系 - 半镜头镜头的组合来研究宇宙学约束的潜在收益,并假设源为源的DES 1年度元元素样品。我们根据(光度)红移,$ z {\ rm phot} $的函数探索基于$ i $ band的幅度削减的幅度削减的可重现选择,并基于使用良好的红色质量样本的那些潜在收益。我们专注于密度和光度红移精度之间的平衡,同时在一组现实的宇宙学和系统参数上边缘化。我们的最佳选择,即杂志样本,满足$ i <4 \,z {\ rm phot} + 18 $,并具有$ \ sim 30 \%$ $ $ $ $ $ $ \ sim \ sim \ sim 3.5 $ 3.5 $ 3.5 $倍的星系,比redmagic高。假设WCDM型号和等效量表可以减轻非线性效果,这将导致$ 40 \%$ $增加的$ω_m$,$ W $,$ W $和$σ_8$,以及$ 16 \%\%$ n $ c $σ_8$,$ 10 \%$ $ $ $ $ω的$ $ 12. $ $ω_m$,$ 16 \%$ 16 \%$ $ $ $ $ 12.同样,在LCDM中,我们发现$ 19_8 $和$ω_m$的$ 19 \%$和$ 27 \%$的提高。我们还探索了较小幅度的较小幅度的限制样品,发现最佳选择($ i <22.2 $)具有$ \ sim 7 $ \ sim 7 $倍的星系和$ \ sim 20 \%$ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $。我们表明,我们的结果在假定的星系偏置和光度红移不确定性方面具有强大的稳定性,除了磁通量限制的样品外,层造影箱数量增加或包含垃圾箱的互相关,而这些样品的进一步增长,而这些样品的收益更为重要。
We investigate potential gains in cosmological constraints from the combination of galaxy clustering and galaxy-galaxy lensing by optimizing the lens galaxy sample selection using information from Dark Energy Survey (DES) Year 3 data and assuming the DES Year 1 Metacalibration sample for the sources. We explore easily reproducible selections based on magnitude cuts in $i$-band as a function of (photometric) redshift, $z_{\rm phot}$, and benchmark the potential gains against those using the well established redMaGiC sample. We focus on the balance between density and photometric redshift accuracy, while marginalizing over a realistic set of cosmological and systematic parameters. Our optimal selection, the MagLim sample, satisfies $i < 4 \, z_{\rm phot} + 18$ and has $\sim 30\%$ wider redshift distributions but $\sim 3.5$ times more galaxies than redMaGiC. Assuming a wCDM model and equivalent scale cuts to mitigate nonlinear effects, this leads to $40\%$ increase in the figure of merit for the pair combinations of $Ω_m$, $w$, and $σ_8$, and gains of $16\%$ in $σ_8$, $10\%$ in $Ω_m$, and $12\%$ in $w$. Similarly, in LCDM we find an improvement of $19\%$ and $27\%$ on $σ_8$ and $Ω_m$, respectively. We also explore flux-limited samples with a flat magnitude cut finding that the optimal selection, $i < 22.2$, has $\sim 7$ times more galaxies and $\sim 20\%$ wider redshift distributions compared to MagLim, but slightly worse constraints. We show that our results are robust with respect to the assumed galaxy bias and photometric redshift uncertainties with only moderate further gains from increased number of tomographic bins or the inclusion of bin cross-correlations, except in the case of the flux-limited sample, for which these gains are more significant.