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Strong lensing models of eight CLASH clusters from extensive spectroscopy: Accurate total mass reconstructions in the cores ?

机译:来自广泛光谱学的八个CLASH簇的强透镜模型:核心中精确的总质量重建

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We carried out a detailed strong lensing analysis of a sub-sample of eight galaxy clusters of the Cluster Lensing And Supernova survey with Hubble (CLASH) in the redshift range of z _(cluster)?=?[0.23???0.59] using extensive spectroscopic information, primarily from the Multi Unit Spectroscopic Explorer (MUSE) archival data and complemented with CLASH-VLT redshift measurements. The observed positions of the multiple images of strongly lensed background sources were used to constrain parametric models describing the cluster total mass distributions. Different models were tested in each cluster depending on the complexity of its mass distribution and on the number of detected multiple images. Four clusters show more than five spectroscopically confirmed multiple image families. In this sample, we did not make use of families that are only photometrically identified in order to reduce model degeneracies between the values of the total mass of a cluster source redshifts, in addition to systematics due to the potential misidentifications of multiple images. For the remaining four clusters, we used additional families without any spectroscopic confirmation to increase the number of strong lensing constraints up to the number of free parameters in our parametric models. We present spectroscopic confirmation of 27 multiply lensed sources, with no previous spectroscopic measurements, spanning over the redshift range of z _(src)?=?[0.7???6.1]. Moreover, we confirm an average of 48 galaxy members in the core of each cluster thanks to the high efficiency and large field of view of MUSE. We used this information to derive precise strong lensing models, projected total mass distributions, and magnification maps. We show that, despite having different properties (i.e. number of mass components, total mass, redshift, etc.), the projected total mass and mass density profiles of all clusters have very similar shapes when rescaled by independent measurements of M _(200c)and R _(200c). Specifically, we measured the mean value of the projected total mass of our cluster sample within 10 (20)% of R _(200c)to be 0.13 (0.32) of M _(200c), with a remarkably small scatter of 5 (6)%. Furthermore, the large number of high- z sources and the precise magnification maps derived in this work for four clusters add up to the sample of high-quality gravitational telescopes to be used to study the faint and distant Universe.
机译:我们使用z _(cluster)?=?[0.23 ??? 0.59]的红移范围内的哈勃(CLASH)对哈勃(CLASH)的八组星团和超新星调查的子样本进行了详细的强透镜分析。广泛的光谱信息,主要来自多单元光谱浏览器(MUSE)档案数据,并补充有CLASH-VLT红移测量。使用强透镜背景源的多个图像的观察位置来约束描述簇总质量分布的参数模型。根据每个群集的质量分布的复杂性和检测到的多个图像的数量,对不同的模型进行了测试。四个群集显示了五个以上经光谱确认的图像族。在此样本中,除了由于多个图像的潜在错误识别而导致系统化之外,我们没有使用仅通过光度学识别的族来减少模型源中的簇源红移总值之间的简并性。对于其余的四个群集,我们使用了没有任何光谱确认的其他族,以将强透镜约束的数量增加到参数模型中的自由参数数量。我们提出了27个多透镜源的光谱学确认,没有以前的光谱学测量,跨越了z_(src)?=?[0.7?6.1]的红移范围。此外,由于MUSE的高效率和大视野,我们确认每个星团核心平均有48个银河成员。我们使用此信息得出精确的强透镜模型,预计的总质量分布和放大图。我们显示,尽管具有不同的属性(例如,质量分量的数量,总质量,红移等),但通过独立测量M _(200c)重新缩放后,所有群集的预计总质量和质量密度分布图都具有非常相似的形状。和R _(200c)。具体而言,我们在R _(200c)的10(20)%内测量了群集样本的预计总质量的平均值,使其为M _(200c)的0.13(0.32),散布非常小,为5(6 )%。此外,这项工作中为四个星团导出的大量高z辐射源和精确的放大倍数图,加在一起就是用于研究微弱和遥远宇宙的高质量引力望远镜的样本。

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