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The Einstein Ring 0047-2808 Revisited: A Bayesian Inversion

机译:爱因斯坦环0047-2808再探:贝叶斯反演

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In a previous paper, we outlined a new Bayesian method for inferring the properties of extended gravitational lenses given data in the form of resolved images. This method holds the most promise for optimally extracting information from the observed image, while providing reliable uncertainties in all parameters. Here, we apply the method to the well studied optical Einstein ring 0047-2808. Our results are in broad agreement with previous studies, showing that the density profile of the lensing galaxy is aligned within a few degrees of the light profile, and suggesting that the source galaxy (at redshift 3.6) is a binary system, although its size is only of order 1-2 kpc. We also find that the mass of the elliptical lensing galaxy enclosed by the image is (2.91 ± 0.01) × 1011 M☉. Our method is able to achieve improved resolution for the source reconstructions, although we also find that some of the uncertainties are greater than has been found in previous analyses, due to the inclusion of extra pixels and a more general lens model.
机译:在先前的论文中,我们概述了一种新的贝叶斯方法,用于以解析图像的形式给出给定数据来推断引力透镜的特性。该方法最有希望从观察到的图像中最佳地提取信息,同时在所有参数中提供可靠的不确定性。在这里,我们将这种方法应用于经过深入研究的光学爱因斯坦环0047-2808。我们的结果与先前的研究大致吻合,表明透镜星系的密度分布在光分布的几度范围内对齐,并且表明源星系(在红移3.6处)是二元系统,尽管它的大小为仅订购1-2 kpc。我们还发现,图像所包围的椭圆透镜星系的质量为(2.91±0.01)×1011M☉。我们的方法能够为源重建实现更高的分辨率,尽管我们还发现,由于包含了额外的像素和更通用的镜头模型,因此某些不确定性要比以前的分析中发现的不确定性要大。

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