组装偏差对聚类加弱透镜宇宙学分析的影响

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
R. Paviot, A. Rocher, S. Codis, A. de Mattia, E. Jullo, S. de la Torre
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引用次数: 0

摘要

背景过去几十年来,星系-光环连接的经验模型,如光环占据分布(HOD)模型,被广泛用于在准线性尺度上对微扰模型进行深入检验。然而,这些模型无法再现非线性尺度上的星系透镜信号,对观测到的信号预测过高达40%。DESI和Euclid等正在进行的第四阶段星系巡天将以亚百分之一的精度测量宇宙学参数,为了准确估计微扰模型的理论不确定性,现在对星系-光环连接进行精确建模至关重要。本文比较了标准HOD(仅基于光环质量)和扩展HOD,后者将星系组装偏差和光环占据的局部环境依赖性作为附加特征。这些模型是根据观测到的0.6 < z < 1.1范围内的eBOSS发光红色星系和发射线星系的聚类和星系-星系透镜信号校准的。我们对两个HOD的模拟星系样本进行了组合聚类-透镜宇宙学分析,以量化微扰模型的系统预算。扩展的HOD不仅考虑了暗物质晕的质量,而且还考虑了这些次要属性,从而更全面地了解了星系与其周围环境之间的联系。特别是,我们发现发光的红色星系优先占据密度更大、各向异性更强的环境。我们的结果凸显了在经验模型中考虑环境因素的重要性,扩展的HOD在10 h-1 Mpc以下的尺度上可以将观测到的信号再现20%以内。我们的宇宙学分析表明,无论星系群如何,我们的扰动模型都能产生类似的约束条件,而扩展 HOD 的拟合优度更好。这些结果表明,扩展 HOD 应该用来量化建模的系统性。这个扩展框架也应该被证明对前瞻性建模技术有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of assembly bias on clustering plus weak lensing cosmological analysis
Context. Empirical models of galaxy-halo connection such as the halo occupation distribution (HOD) model have been widely used over the past decades to intensively test perturbative models on quasi-linear scales. However, these models fail to reproduce the galaxygalaxy lensing signal on non-linear scales, over-predicting the observed signal by up to 40%.Aims. With ongoing Stage-IV galaxy surveys such as DESI and Euclid that will measure cosmological parameters at sub-percent precision, it is now crucial to precisely model the galaxy-halo connection in order to accurately estimate the theoretical uncertainties of perturbative models.Methods. This paper compares a standard HOD (based on halo mass only) to an extended HOD that incorporates as additional features galaxy assembly bias and local environmental dependencies on halo occupation. These models were calibrated against the observed clustering and galaxy-galaxy lensing signal of eBOSS luminous red galaxies and emission line galaxies in the range 0.6 < z < 1.1. We performed a combined clustering-lensing cosmological analysis on the simulated galaxy samples of both HODs to quantify the systematic budget of perturbative models.Results. By considering not only the mass of the dark matter halos but also these secondary properties, the extended HOD offers a more comprehensive understanding of the connection between galaxies and their surroundings. In particular, we found that the luminous red galaxies preferentially occupy denser and more anisotropic environments. Our results highlight the importance of considering environmental factors in empirical models with an extended HOD that reproduces the observed signal within 20% on scales below 10 h−1 Mpc. Our cosmological analysis reveals that our perturbative model yields similar constraints regardless of the galaxy population, with a better goodness of fit for the extended HOD. These results suggest that the extended HOD should be used to quantify modelling systematics. This extended framework should also prove useful for forward modelling techniques.
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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