论文标题
黑暗能源调查第1年的结果:限制宇宙中的男性物理
Dark Energy Survey Year 1 Results: Constraining Baryonic Physics in the Universe
论文作者
论文摘要
大规模结构的测量是使用理论预测对物质分布进行解释的,包括重型物理学的潜在影响。我们使用弱透镜和星系聚类观测值(3 $ \ times $ 2pt)的黑暗能源调查(DES)数据(DES)结合了Baryon声学振荡(BAO)和Planck Cosmic Microhawave的外部信息。我们的Baryon建模通过一组跨越各种Baryon场景的流体动力学模拟来告知。我们通过从这些模拟中提取的摘要统计数据进行主成分(PC)分析范围。我们表明,在DES Y1约束功率的水平上,一台PC足以描述可观察到的Baryonic效应的变化,而第一个PC振幅($ Q_1 $)通常反映了Baryon反馈的强度。 $ q_1 $的上限先前受插图反馈方案的限制,我们达到$ \ sim 20 \%$ $改进的约束,$ s_8 =σ_8(ω_ {\ rm m} /0.3)^{0.5} = 0.788^= 0.788^= 0.788^{+0.018} $ 2.这种增益是由将小规模宇宙剪切信息纳入2.5 arcmin的驱动,这在先前未建模男性化物理学的DES分析中被排除在外。我们获得了$ s_8 = 0.781^{+0.014} _ { - 0.015} $,用于组合的des y1+planck ee+bao分析,并具有非信息性$ q_1 $先验。在巴里昂的约束方面,我们测量$ q_1 = 1.14^{+2.20} _ { - { - 2.80} $仅用于des y1,而$ q_1 = 1.42^{+1.63} _ { - 1.48} $ for Desy1+planck ee+bao yous glance+$ aftime $ aftire glanck afe ye $ tement grement temime $ nexter of $ $ $ $ 2 $ 2 σ$。
Measurements of large-scale structure are interpreted using theoretical predictions for the matter distribution, including potential impacts of baryonic physics. We constrain the feedback strength of baryons jointly with cosmology using weak lensing and galaxy clustering observables (3$\times$2pt) of Dark Energy Survey (DES) Year 1 data in combination with external information from baryon acoustic oscillations (BAO) and Planck cosmic microwave background polarization. Our baryon modeling is informed by a set of hydrodynamical simulations that span a variety of baryon scenarios; we span this space via a Principal Component (PC) analysis of the summary statistics extracted from these simulations. We show that at the level of DES Y1 constraining power, one PC is sufficient to describe the variation of baryonic effects in the observables, and the first PC amplitude ($Q_1$) generally reflects the strength of baryon feedback. With the upper limit of $Q_1$ prior being bound by the Illustris feedback scenarios, we reach $\sim 20\%$ improvement in the constraint of $S_8=σ_8(Ω_{\rm m}/0.3)^{0.5}=0.788^{+0.018}_{-0.021}$ compared to the original DES 3$\times$2pt analysis. This gain is driven by the inclusion of small-scale cosmic shear information down to 2.5 arcmin, which was excluded in previous DES analyses that did not model baryonic physics. We obtain $S_8=0.781^{+0.014}_{-0.015}$ for the combined DES Y1+Planck EE+BAO analysis with a non-informative $Q_1$ prior. In terms of the baryon constraints, we measure $Q_1=1.14^{+2.20}_{-2.80}$ for DES Y1 only and $Q_1=1.42^{+1.63}_{-1.48}$ for DESY1+Planck EE+BAO, allowing us to exclude one of the most extreme AGN feedback hydrodynamical scenario at more than $2 σ$.