论文标题
Kids-DR3中的Amico Galaxy簇:堆叠弱透镜分析的光环偏差和功率谱归一化的测量
AMICO galaxy clusters in KiDS-DR3: Measurement of the halo bias and power spectrum normalization from a stacked weak lensing analysis
论文作者
论文摘要
星系簇是基础物质密度场的有偏见的示踪剂。在大约10 mpc/\ textit {h}的非常大的半径上,剪切轮廓显示了第二次术语的证据。这与星系簇周围的相关物质分布有关,并且与所谓的光环偏置成正比。我们对基于Amico Galaxy群集目录的光环偏置质量关系进行了观察性分析,其中包括在第三次发行《儿童调查》中检测到的7000名候选人。我们通过堆叠的弱透镜分析将簇样品分成14个红移富度箱,并在每个垃圾箱中得出光环偏置和病毒质量。观察到的Halo偏见关系和基于$ CDM标准宇宙学模型的理论预测显示了$2σ$之内的一致性。整个目录上偏差和质量的平均测量值给出$ m_ {200c} =(4.9 \ pm 0.3)\ times 10^{13} m _ {\ odot}/\ textIt {h} $和$b_hσ_8^2 = 1.2 = 1.2 \ pm 0.1 $。通过数值模拟的偏置质量关系的额外先验,我们用固定物质密度$ω_m= 0.3 $限制了功率谱的归一化,找到$σ_8= 0.63 \ pm 0.10 $。
Galaxy clusters are biased tracers of the underlying matter density field. At very large radii beyond about 10 Mpc/\textit{h}, the shear profile shows evidence of a second-halo term. This is related to the correlated matter distribution around galaxy clusters and proportional to the so-called halo bias. We present an observational analysis of the halo bias-mass relation based on the AMICO galaxy cluster catalog, comprising around 7000 candidates detected in the third release of the KiDS survey. We split the cluster sample into 14 redshift-richness bins and derive the halo bias and the virial mass in each bin by means of a stacked weak lensing analysis. The observed halo bias-mass relation and the theoretical predictions based on the $Λ$CDM standard cosmological model show an agreement within $2σ$. The mean measurements of bias and mass over the full catalog give $M_{200c} = (4.9 \pm 0.3) \times 10^{13} M_{\odot}/\textit{h}$ and $b_h σ_8^2 = 1.2 \pm 0.1$. With the additional prior of a bias-mass relation from numerical simulations, we constrain the normalization of the power spectrum with a fixed matter density $Ω_m = 0.3$, finding $σ_8 = 0.63 \pm 0.10$.