论文标题
用最深的JWST成像揭示Abell 2744的扩展强透镜结构
UNCOVERing the extended strong lensing structures of Abell 2744 with the deepest JWST imaging
论文作者
论文摘要
我们根据揭幕计划的框架中采取的新的超深JWST成像,为大型星系群Abell 〜2744提供了一个新的参数镜头模型。这些观察结果构成了迄今为止的镜头群集的最深JWST图像,并增加了现有的Deep Hubble Space望远镜(HST)图像,以及最近为此字段拍摄的JWST ERS和DDT数据。 Unikover($ \ sim45 $ arcmin $^2 $)的广泛视野范围延伸到了集群良好的中心核心之外,并揭示了北部和西北两个大型集群子结构围绕两个大型集群子结构的壮观财富,以前尚无多个图像。 16个来源的75个新发现的多个图像和候选物使我们首次使用强透镜(SL)来限制这些扩展群集结构周围的透镜特性和总质量分布。我们的模型产生有效的爱因斯坦半径为$θ_{ $ m(θ<θ_{ $ m(θ<θ_{北方团块的巨大程度较小,而$θ_{我们发现Abell〜2744的北部子结构与弱透镜(WL)的发现广泛一致,并与这些先前研究发现的丝状结构保持一致。我们的模型尤其揭示了各种群集结构之间的大型高宏伟面积,这对于界场的镜头星系研究至关重要。该模型可公开使用,以伴随第一个发现数据发布。
We present a new parametric lens model for the massive galaxy cluster Abell~2744 based on the new ultra-deep JWST imaging taken in the framework of the UNCOVER program. These observations constitute the deepest JWST images of a lensing cluster to date, adding to the existing deep Hubble Space Telescope (HST) images and the recent JWST ERS and DDT data taken for this field. The wide field-of-view of UNCOVER ($\sim45$ arcmin$^2$) extends beyond the cluster's well-studied central core and reveals a spectacular wealth of prominent lensed features around two massive cluster sub-structures in the north and north-west, where no multiple images were previously known. The 75 newly uncovered multiple images and candidates of 16 sources allow us, for the first time, to constrain the lensing properties and total mass distribution around these extended cluster structures using strong lensing (SL). Our model yields an effective Einstein radius of $θ_{E,\mathrm{main}}\simeq23''$ for the main cluster core (for $z_{\mathrm{s}}=2$), enclosing a mass of $M(θ<θ_{E,\mathrm{main}})\simeq7.7\times10^{13}$ M$_{\odot}$, and $θ_{E,\mathrm{NW}}\simeq13''$ for the newly discovered north-western SL structure enclosing $M(θ<θ_{E,\mathrm{NW}})\simeq2.2\times10^{13}$ M$_{\odot}$. The northern clump is somewhat less massive with $θ_{E,\mathrm{N}}\simeq7''$ enclosing $M(θ<θ_{E,\mathrm{N}})\simeq8\times10^{12}$ M$_{\odot}$. We find the northern sub-structures of Abell~2744 to broadly agree with the findings from weak lensing (WL) and align with the filamentary structure found by these previous studies. Our model in particular reveals a large area of high magnifications between the various cluster structures, which will be paramount for lensed galaxy studies in the UNCOVER field. The model is made publicly available to accompany the first UNCOVER data release.