论文标题

用红外弱透镜限制新出现的星系群集SPARCS1049+56

Constraining the Mass of the Emerging Galaxy Cluster SpARCS1049+56 at z=1.71 with Infrared Weak Lensing

论文作者

Finner, Kyle, Jee, M. James, Webb, Tracy, Wilson, Gillian, Perlmutter, Saul, Muzzin, Adam, Hlavacek-Larrondo, Julie

论文摘要

在宇宙的层次结构形成模型中,星系簇通过一系列合并组装。因此,预计早期宇宙中的星系簇正在积极形成并动态年轻。 SPARCS1049+56位于Z = 1.71的高红移处,为银河系组形成过程提供了独特的外观。该簇已被证明具有簇星系浓缩并具有强烈​​的恒星形成。它的高红移将弱镜头分析推向了光谱的状态,将其推向红外线。配备了深哈勃太空望远镜宽场摄像头3 UVIS和IR观测值,我们提出了Sparcs1049+56的弱透镜表征。由于很少进行IR弱透明研究,因此我们讨论了IR弱透镜程序以及该领域随附的系统的PSF建模和星系形状测量的细节。在IR的未来弱光镜研究中,使用下一代太空望远镜(例如JWST,Euclid和Wfirst)了解这些系统学至关重要。通过仔细的分析,映射了该年轻的星系簇的质量分布,并在3.3 Sigma水平上检测到收敛峰。群集的弱透度质量估计为$ 3.5 \ pm1.2 \ times10^{14} \ \ text {m} _ \ odot $,并且与源自质量富度缩放的关系的质量一致。对于如此高的红移而言,这种质量对于一个群集来说是极端的,并表明SPARCS1049+56在标准的$λ$ CDM Universe中很少见。

In the hierarchical structure formation model of the universe, galaxy clusters are assembled through a series of mergers. Accordingly, it is expected that galaxy clusters in the early universe are actively forming and dynamically young. Located at a high redshift of z=1.71, SpARCS1049+56 offers a unique look into the galaxy cluster formation process. This cluster has been shown to be rich in cluster galaxies and to have intense star formation. Its high redshift pushes a weak-lensing analysis beyond the regime of the optical spectrum into that of the infrared. Equipped with deep Hubble Space Telescope Wide Field Camera 3 UVIS and IR observations, we present a weak-lensing characterization of SpARCS1049+56. As few IR weak-lensing studies have been performed, we discuss the details of PSF modeling and galaxy shape measurement for an IR weak-lensing procedure and the systematics that come with the territory. It will be critical to understand these systematics in future weak-lensing studies in the IR with the next generation space telescopes such as JWST, Euclid, and WFIRST. Through a careful analysis, the mass distribution of this young galaxy cluster is mapped and the convergence peak is detected at a 3.3 sigma level. The weak-lensing mass of the cluster is estimated to be $3.5\pm1.2\times10^{14}\ \text{M}_\odot$ and is consistent with the mass derived from a mass-richness scaling relation. This mass is extreme for a cluster at such a high redshift and suggests that SpARCS1049+56 is rare in the standard $Λ$CDM universe.

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