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Hubble Space Telescope Observations of the Lensing Cluster Abell 2218

机译:哈勃太空望远镜对透镜星团Abell 2218的观测

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We present a striking new Hubble Space Telescope (HST) observation of the rich cluster Abell 2218 taken with the Wide Field Planetary Camera 2. HST's restored image quality reveals a sizable number of gravitationally lensed features in this cluster, significantly more than had been identified by using ground-based telescopes. The brightest arcs are resolved by HST and show internal features that enable us to identify multiply imaged examples, confirming and improving the mass models of the cluster determined from ground-based observations. Although weak lensing has been detected statistically in this and other clusters from ground-based data, the superlative resolution of HST enables us to individually identify weakly distorted images more reliably than hitherto, with important consequences for their redshift determination. Using an improved mass model for the cluster calibrated with available spectroscopy for the brightest arcs, we demonstrate how inversion of the lensing model can be used to yield the redshift distribution of ~ 80 faint arclets to R 25. We present a new formalism for estimating the uncertainties in this inversion method and review prospects for interpreting our results and verifying the predicted redshifts.
机译:我们展示了用广角行星相机2对富星团Abell 2218进行的惊人的新哈勃太空望远镜(HST)观测。HST的恢复图像质量揭示了该星团中相当数量的引力透镜特征,远远超过了使用地面望远镜。 HST可以分辨出最亮的电弧,并显示出内部特征,这些特征使我们能够识别出多个成像实例,从而确认和改进了基于地面观测的星团的质量模型。尽管从地面数据中已在该群集和其他群集中统计地检测到弱镜头,但HST的最高分辨率使我们能够比迄今为止更可靠地单独识别弱失真的图像,这对于确定其红移具有重要意义。使用改进的质量模型对簇进行校正,并使用可用的光谱学方法对最亮的弧进行校准,我们演示了如何使用透镜模型的反演产生〜80个微弱的小弧到R 25的红移分布。我们提出了一种新的形式主义来估计这种反演方法的不确定性,并为解释我们的结果和验证预测的红移提供了前景。

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