论文标题

Kids-1000方法:关节弱重力透镜和光谱星系聚类分析的建模和推断

KiDS-1000 Methodology: Modelling and inference for joint weak gravitational lensing and spectroscopic galaxy clustering analysis

论文作者

Joachimi, B., Lin, C. -A., Asgari, M., Tröster, T., Heymans, C., Hildebrandt, H., Köhlinger, F., Sánchez, A. G., Wright, A. H., Bilicki, M., Blake, C., Busch, J. L. van den, Crocce, M., Dvornik, A., Erben, T., Getman, F., Giblin, B., Hoekstra, H., Kannawadi, A., Kuijken, K., Napolitano, N. R., Schneider, P., Scoccimarro, R., Sellentin, E., Shan, H. Y., von Wietersheim-Kramsta, M., Zuntz, J.

论文摘要

我们介绍了通过ESO Kilo-Degree调查(Kids-1000)的第四个数据释放和来自部分重叠的Boss和2Dflens调查的星系群的联合宇宙学分析的方法。星系位置和椭圆度之间的互相关已纳入分析中,需要将非线性尺度的混合模型融合在一起,该模型将扰动和非扰动方法融合在一起,并通过天体物理学的影响评估了贡献。所有弱透镜信号均通过对调查掩码不敏感的傅立叶空间统计量始终如一地测量,并显示出低水平的模式混合。已经更新了光度红移分布和多重引力剪切偏置的校准,并且更完整的残留校准不确定性被传播到可能性中。一套由20000多个模拟的专用套件用于评估协方差模型的性能,并量化调查几何形状和调查深度对信号及其错误的空间变化的影响。可能已验证了可能性的样本分布和$χ^2 $拟合统计量,并提出了对自由度数量的更改。 $ s_8 =σ_8\,(ω_{\ rm m} /0.3)的标准弱透镜点估计值很容易被误解为偏低,并且已经提出了替代性估计器和相关的可靠间隔。与弱透镜建模和推理有关的已知系统效应显示出$ s_8 $的偏置不超过0.1标准偏差,并且警告说,对于内在的星系比对模型,没有结论性的验证数据。与以前的儿童分析相比,仅弱镜头的限制$ s_8 $限制预计将提高20%,而对于联合分析,预计将提高29%。 [简略]

We present the methodology for a joint cosmological analysis of weak gravitational lensing from the fourth data release of the ESO Kilo-Degree Survey (KiDS-1000) and galaxy clustering from the partially overlapping BOSS and 2dFLenS surveys. Cross-correlations between galaxy positions and ellipticities have been incorporated into the analysis, necessitating a hybrid model of non-linear scales that blends perturbative and non-perturbative approaches, and an assessment of contributions by astrophysical effects. All weak lensing signals are measured consistently via Fourier-space statistics that are insensitive to the survey mask and display low levels of mode mixing. The calibration of photometric redshift distributions and multiplicative gravitational shear bias has been updated, and a more complete tally of residual calibration uncertainties is propagated into the likelihood. A dedicated suite of more than 20000 mocks is used to assess the performance of covariance models and to quantify the impact of survey geometry and spatial variations of survey depth on signals and their errors. The sampling distributions for the likelihood and the $χ^2$ goodness-of-fit statistic have been validated, with proposed changes to the number of degrees of freedom. Standard weak lensing point estimates on $S_8=σ_8\,(Ω_{\rm m}/0.3)^{1/2}$ derived from its marginal posterior are easily misinterpreted to be biased low, and an alternative estimator and associated credible interval have been proposed. Known systematic effects pertaining to weak lensing modelling and inference are shown to bias $S_8$ by no more than 0.1 standard deviations, with the caveat that no conclusive validation data exist for models of intrinsic galaxy alignments. Compared to the previous KiDS analyses, $S_8$ constraints are expected to improve by 20% for weak lensing alone and by 29% for the joint analysis. [abridged]

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