论文标题
Mac的最先进的强镜模型J0416.1-2403具有最大的光谱型多个图像样品
A state-of-the-art strong lensing model of MACS J0416.1-2403 with the largest sample of spectroscopic multiple images
论文作者
论文摘要
在VLT上获得的HST的多波段成像与Muse Integral Field Spectroscopicy的组合,最近在Galaxy簇的强透镜(SL)建模方面取得了巨大进步。从每个群集具有光度红移的数十个图像中,最近通过在某些情况下利用一百多个光谱确认的多个图像和群集成员星系来开发新一代的高精度SL模型。 JWST观察SL簇(从数百到可能的一千个多个图像),预计将进一步向前迈进。在这种情况下,我们提出了一个新的,最先进的SL模型的Galaxy群集Macs J0416.1-2403,利用237个光谱镜确认的多个图像,这是迄今为止使用的安全多重镜头源的最大样品。该模型结合了64个聚类星系的恒星运动学信息,以及由Chandra X射线观测确定的群集的热气体质量分布。许多多个图像的观察到位置以0.43 arcsec的明显精度复制。为了进一步评估该镜头模型的可靠性并强调了对先前发表的模型的改进,我们通过新开发的前向建模软件显示了几个镜头星系的扩展表面亮度重建。与同一群集的其他SL模型的比较表明,该新模型更适合准确地重现观察到的多个图像的位置,形状和通量。除了对群集的总质量分布的鲁棒表征外,我们的模型还可以提供准确,精确的放大图,这是研究微弱的,高红移镜头源的内在物理特性的关键。该模型是通过我们新开发的强镜在线工具(或插槽)公开提供的。
The combination of multi-band imaging from HST with MUSE integral field spectroscopy, obtained at the VLT, has recently driven remarkable progress in strong lensing (SL) modeling of galaxy clusters. From a few tens of multiple images with photometric redshifts per cluster, a new generation of high-precision SL models have recently been developed, by exploiting in some cases over a hundred of spectroscopically confirmed multiple images and cluster member galaxies. A further step forward is expected with JWST observations of SL clusters (from hundreds to possibly a thousand of multiple images). In this context, we present a new, state-of-the-art SL model of the galaxy cluster MACS J0416.1-2403, utilizing 237 spectroscopically confirmed multiple images, which is the largest sample of secure multiply lensed sources utilized to date. This model incorporates stellar kinematics information of 64 cluster galaxies and the hot-gas mass distribution of the cluster determined from Chandra X-ray observations. The observed positions of the many multiple images are reproduced with a remarkable accuracy of 0.43 arcsec. To further assess the reliability of this lens model and to highlight the improvement over previously published models, we show the extended surface brightness reconstruction of several lensed galaxies through a newly developed forward modeling software. The comparison with other SL models of the same cluster demonstrates that this new model is better suited to accurately reproduce the positions, shapes and fluxes of the observed multiple images. Besides a robust characterization of the total mass distribution of the cluster, our model can provide accurate and precise magnification maps that are key to studying the intrinsic physical properties of faint, high-redshift lensed sources. The model is made publicly available through our newly developed Strong Lensing Online Tool (or SLOT).